1,018 results on '"Mokeev, V"'
Search Results
152. Beam-spin asymmetry Σ for Σ− hyperon photoproduction off the neutron
- Author
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Zachariou, N., primary, Munevar, E., additional, Berman, B.L., additional, Bydžovský, P., additional, Cieplý, A., additional, Feldman, G., additional, Ilieva, Y., additional, Nadel-Turonski, P., additional, Skoupil, D., additional, Sarantsev, A.V., additional, Watts, D.P., additional, Amaryan, M.J., additional, Angelini, G., additional, Armstrong, W.R., additional, Atac, H., additional, Avakian, H., additional, Barion, L., additional, Bashkanov, M., additional, Battaglieri, M., additional, Bedlinskiy, I., additional, Benmokhtar, F., additional, Bianconi, A., additional, Biondo, L., additional, Biselli, A.S., additional, Bondi, M., additional, Bossù, F., additional, Boiarinov, S., additional, Briscoe, W.J., additional, Brooks, W.K., additional, Bulumulla, D., additional, Burkert, V.D., additional, Carman, D.S., additional, Carvajal, J.C., additional, Celentano, A., additional, Chatagnon, P., additional, Chetry, T., additional, Ciullo, G., additional, Clark, L., additional, Cole, P.L., additional, Contalbrigo, M., additional, Costantini, G., additional, Crede, V., additional, D'Angelo, A., additional, Dashyan, N., additional, De Vita, R., additional, Defurne, M., additional, Deur, A., additional, Diehl, S., additional, Djalali, C., additional, Dupre, R., additional, Dugger, M., additional, Egiyan, H., additional, Ehrhart, M., additional, El Alaoui, A., additional, El Fassi, L., additional, Eugenio, P., additional, Fedotov, G., additional, Fegan, S., additional, Filippi, A., additional, Fradi, A., additional, Gavalian, G., additional, Gilfoyle, G.P., additional, Girod, F.X., additional, Gleason, C., additional, Golubenko, A.A., additional, Gothe, R.W., additional, Griffioen, K.A., additional, Guidal, M., additional, Hafidi, K., additional, Hakobyan, H., additional, Hattawy, M., additional, Hayward, T.B., additional, Heddle, D., additional, Hicks, K., additional, Hobart, A., additional, Holtrop, M., additional, Ireland, D.G., additional, Isupov, E.L., additional, Jenkins, D., additional, Jo, H.S., additional, Joo, K., additional, Keller, D., additional, Khanal, A., additional, Khandaker, M., additional, Kim, A., additional, Klein, F.J., additional, Kripko, A., additional, Kubarovsky, V., additional, Lanza, L., additional, Leali, M., additional, Livingston, K., additional, MacGregor, I.J.D., additional, Marchand, D., additional, Markov, N., additional, Marsicano, L., additional, Mascagna, V., additional, McKinnon, B., additional, Migliorati, S., additional, Mineeva, T., additional, Mirazita, M., additional, Mokeev, V., additional, Munoz Camacho, C., additional, Neupane, K., additional, Niccolai, S., additional, Niculescu, G., additional, O'Connell, T.R., additional, Osipenko, M., additional, Ostrovidov, A.I., additional, Pandey, P., additional, Paolone, M., additional, Pappalardo, L.L., additional, Paremuzyan, R., additional, Pasyuk, E., additional, Phelps, W., additional, Pogorelko, O., additional, Price, J.W., additional, Prok, Y., additional, Raue, B.A., additional, Ripani, M., additional, Ritman, J., additional, Rizzo, A., additional, Rosner, G., additional, Rowley, J., additional, Sabatie, F., additional, Salgado, C., additional, Schmidt, A., additional, Schumacher, R.A., additional, Sharabian, Y.G., additional, Shirokov, E.V., additional, Shrestha, U., additional, Sokhan, D., additional, Soto, O., additional, Sparveris, N., additional, Stepanyan, S., additional, Stoler, P., additional, Strakovsky, I.I., additional, Strauch, S., additional, Tyson, R., additional, Ungaro, M., additional, Venturelli, L., additional, Voskanyan, H., additional, Vossen, A., additional, Voutier, E., additional, Wei, K., additional, Wei, X., additional, Wishart, R., additional, Wood, M.H., additional, Yale, B., additional, Zhang, J., additional, and Zhao, Z.W., additional
- Published
- 2022
- Full Text
- View/download PDF
153. Polarized structure function slT' from p0p electroproduction data in the resonance region at 0.4 GeV2<1.0 GeV2
- Author
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Isupov, E. L., Burkert, V. D., Golubenko, A. A., Joo, K., Markov, N. S., Mokeev, V. I., Smith, L. C., Armstrong, W. R., Atac, H., Avakian, H., Baltzell, N. A., Barion, L., Battaglieri, M., Bedlinskiy, I., Benmokhtar, F., Bianconi, A., Biondo, L., Biselli, A. S., Bondi, M., Bossu, F., Briscoe, W. J., Brooks, W. K., Bulumulla, D., Capobianco, R. A., Carman, D. S., Carvajal, J. C., Chatagnon, P., Chesnokov, V., Ciullo, G., Cole, P. L., Clary, B. A., Contalbrigo, M., Costantini, G., D'Angelo, A., Dashyan, N., De Vita, R., Defurne, M., Deur, A., Diehl, S., Djalali, C., Dupre, R., Egiyan, H., El Alaoui, A., El Fassi, L., Elouadrhiri, L., Eugenio, P., Fegan, S., Filippi, A., Gavalian, G., Gilfoyle, G. P., Glazier, D. I., Gothe, R. W., Griffioen, K. A., Guidal, M., Guo, L., Hafidi, K., Hakobyan, H., Hattawy, M., Hayward, T. B., Heddle, D., Hicks, K., Hobart, A., Holtrop, M., Illari, I., Ireland, D. G., Jenkins, D., H. S., Jo, Keller, D., Khanal, A., Khandaker, M., Kim, A., Kim, W., Klein, F. J., Klimenko, V., Kripko, A., Kubarovsky, V., Lagerquist, V., Lanza, L., Leali, M., Lenisa, P., Livingston, K., Macgregor, I. J. D., Marchand, D., Marsicano, L., Mascagna, V., Mckinnon, B., Meziani, Z. E., Migliorati, S., Mineeva, T., Mirazita, M., Munoz Camacho, C., Nadel-Turonski, P., Neupane, K., Niccolai, S., O'Connell, T., Osipenko, M., Pandey, P., Paolone, M., Pappalardo, L. L., Paremuzyan, R., Pasyuk, E., Paul, S. J., Phelps, W., Pilleux, N., Pogorelko, O., Poudel, J., Price, J. W., Prok, Y., Raue, B. A., Reed, T., Ripani, M., Ritman, J., Rowley, J., Sabatie, F., Salgado, C., Schmidt, A., Schumacher, R. A., Sharabian, Y. G., Shirokov, E. V., Shrestha, U., Simmerling, P., Sokhan, D., Sparveris, N., Stepanyan, S., Strakovsky, I. I., Strauch, S., Tan, J. A., Tyson, R., Ungaro, M., Vallarino, S., Venturelli, L., Voskanyan, H., Voutier, E., Watts, D., Wei, K., Wei, X., Wood, M. H., Yale, B., Zachariou, N., Zhang, J., and Ziegler, V.
- Published
- 2022
154. Beam-spin asymmetry sigma for sigma- hyperon photoproduction off the neutron
- Author
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Zachariou, N, Munevar, E, Berman, Bl, Byd??ovsk??, P, Ciepl??, A, Feldman, G, Ilieva, Y, Nadel-Turonski, P, Skoupil, D, Sarantsev, Av, Watts, Dp, Amaryan, Mj, Angelini, G, Armstrong, Wr, Atac, H, Avakian, H, Barion, L, Bashkanov, M, Battaglieri, M, Bedlinskiy, I, Benmokhtar, F, Bianconi, A, Biondo, L, Biselli, As, Bondi, M, Boss??, F, Boiarinov, S, Briscoe, Wj, Brooks, Wk, Bulumulla, D, Burkert, Vd, Carman, Ds, Carvajal, Jc, Celentano, A, Chatagnon, P, Chetry, T, Ciullo, G, Clark, L, Cole, Pl, Contalbrigo, M, Costantini, G, Crede, V, D'Angelo, A, Dashyan, N, De Vita, R, Defurne, M, Deur, A, Diehl, S, Djalali, C, Dupre, R, Dugger, M, Egiyan, H, Ehrhart, M, El Alaoui, A, El Fassi, L, Eugenio, P, Fedotov, G, Fegan, S, Filippi, A, Fradi, A, Gavalian, G, Gilfoyle, Gp, Girod, Fx, Gleason, C, Golubenko, Aa, Gothe, Rw, Griffioen, Ka, Guidal, M, Hafidi, K, Hakobyan, H, Hattawy, M, Hayward, Tb, Heddle, D, Hicks, K, Hobart, A, Holtrop, M, Ireland, Dg, Isupov, El, Jenkins, D, H. S., J, Joo, K, Keller, D, Khanal, A, Khandaker, M, Kim, A, Klein, Fj, Kripko, A, Kubarovsky, V, Lanza, L, Leali, M, Livingston, K, Macgregor, Ijd, Marchand, D, Markov, N, Marsicano, L, Mascagna, V, Mckinnon, B, Migliorati, S, Mineeva, T, Mirazita, M, Mokeev, V, Munoz Camacho, C, Neupane, K, Niccolai, S, Niculescu, G, O'Connell, Tr, Osipenko, M, Ostrovidov, Ai, Pandey, P, Paolone, M, Pappalardo, Ll, Paremuzyan, R, Pasyuk, E, Phelps, W, Pogorelko, O, Price, Jw, Prok, Y, Raue, Ba, Ripani, M, Ritman, J, Rizzo, A, Rosner, G, Rowley, J, Sabatie, F, Salgado, C, Schmidt, A, Schumacher, Ra, Sharabian, Yg, Shirokov, Ev, Shrestha, U, Sokhan, D, Soto, O, Sparveris, N, Stepanyan, S, Stoler, P, Strakovsky, Ii, Strauch, S, Tyson, R, Ungaro, M, Venturelli, L, Voskanyan, H, Vossen, A, Voutier, E, Wei, K, Wei, X, Wishart, R, Wood, Mh, Yale, B, Zhang, J, and Zhao, Zw
- Subjects
Settore FIS/04 - Published
- 2022
155. Multidimensional, High Precision Measurements of Beam Single Spin Asymmetries in Semi-inclusive π + Electroproduction off Protons in the Valence Region
- Author
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Diehl, S, Kim, A, Angelini, G, Joo, K, Adhikari, S, Amaryan, M, Arratia, M, Atac, H, Avakian, H, Ayerbe Gayoso, C, Baltzell, N A, Barion, L, Bastami, S, Battaglieri, M, Bedlinskiy, I, Benmokhtar, F, Bianconi, A, Biselli, A S, Bondi, M, Bossù, F, Boiarinov, S, Brinkmann, K-T, Briscoe, W J, Brooks, W, Bulumulla, D, Burkert, V D, Carman, D S, Carvajal, J C, Celentano, A, Chatagnon, P, Chetry, T, Ciullo, G, Clark, L, Clary, B A, Cole, P L, Contalbrigo, M, Costantini, G, Crede, V, D'Angelo, A, Dashyan, N, De Vita, R, Defurne, M, Deur, A, Dilks, C, Djalali, C, Dugger, M, Dupre, R, Egiyan, H, Ehrhart, M, El Alaoui, A, El Fassi, L, Elouadrhiri, L, Fegan, S, Filippi, A, Forest, T, Gavalian, G, Gilfoyle, G P, Girod, F X, Glazier, D I, Golubenko, A A, Gothe, R W, Gotra, Y, Griffioen, K A, Guidal, M, Hafidi, K, Hakobyan, H, Hattawy, M, Hauenstein, F, Hayward, T B, Heddle, D, Hicks, K, Hobart, A, Holtrop, M, Hyde, C E, Ireland, D G, Isupov, E L, Jo, H S, Johnston, R, Joosten, S, Keller, D, Khachatryan, M, Khanal, A, Kim, W, Kripko, A, Kubarovsky, V, Kuhn, S E, Lanza, L, Leali, M, Lee, S, Lenisa, P, Livingston, K, Lu, Z, MacGregor, I J D, Marchand, D, Markov, N, Marsicano, L, Mascagna, V, McKinnon, B, Meziani, Z E, Milner, R G, Mineeva, T, Mirazita, M, Mokeev, V, Moran, P, Movsisyan, A, Munoz Camacho, C, Nadel-Turonski, P, Naidoo, Paul, Nanda, S, Neupane, K, Niccolai, S, Niculescu, G, O'Connell, T R, Osipenko, M, Paolone, M, Pappalardo, L L, Paremuzyan, R, Pasyuk, E, Phelps, W, Pogorelko, O, Prok, Y, Prokudin, A, Raue, B A, Ripani, M, Ritman, J, Rizzo, A, Roberts, C D, Rossi, P, Rowley, J, Sabatié, F, Salgado, C, Schmidt, A, Segarra, E P, Sharabian, Y G, Shrestha, U, Simmerling, P, Sokhan, D, Soto, O, Sparveris, N, Stepanyan, S, Stoler, P, Strakovsky, I I, Strauch, S, Tezgin, K, Thornton, A., Tyler, N, Tyson, R, Ungaro, M, Venturelli, L, Voskanyan, H, Vossen, A, Voutier, E, Watts, D P, Wei, K, Wei, X, Xu, S-S, Yale, B, Zachariou, N, Zhang, J, Institut de Recherches sur les lois Fondamentales de l'Univers (IRFU), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay, Laboratoire de Physique des 2 Infinis Irène Joliot-Curie (IJCLab), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Paris-Saclay-Centre National de la Recherche Scientifique (CNRS), and CLAS
- Subjects
deep inelastic scattering: semi-inclusive reaction ,precision measurement ,Settore FIS/04 ,nucleon ,pi+: electroproduction ,parton: distribution function ,structure function: ratio ,polarized beam ,quark gluon: correlation ,transverse momentum dependence ,High Energy Physics - Experiment ,kinematics ,CLAS ,[PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex] ,twist: 3 ,ddc:530 ,High Energy Physics::Experiment ,electron: beam ,higher-dimensional ,Nuclear Experiment ,spin: asymmetry ,experimental results ,Jefferson Lab - Abstract
Physical review letters 128(6), 062005 (2022). doi:10.1103/PhysRevLett.128.062005, High precision measurements of the polarized electron beam-spin asymmetry in semi-inclusive deep inelastic scattering (SIDIS) from the proton have been performed using a 10.6 GeV incident electron beam and the CLAS12 spectrometer at Jefferson Lab. We report here a high precision multidimensional study of single π+ SIDIS data over a large kinematic range in Bjorken x, fractional energy, and transverse momentum of the hadron as well as photon virtualities Q2 ranging from 1–7 GeV2. In particular, the structure function ratio FsinϕLU/FUU has been determined, where FsinϕLU is a twist-3 quantity that can reveal novel aspects of emergent hadron mass and quark-gluon correlations within the nucleon. The data’s impact on the evolving understanding of the underlying reaction mechanisms and their kinematic variation is explored using theoretical models for the different contributing transverse momentum dependent parton distribution functions., Published by APS, College Park, Md.
- Published
- 2022
- Full Text
- View/download PDF
156. Beam-spin asymmetry $\boldsymbol{\Sigma}$ for $\Sigma^-$ hyperon photoproduction off the neutron
- Author
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Zachariou, N., Munevar, E., Berman, B.L., Bydžovský, P., Cieplý, A., Feldman, G., Ilieva, Y., Nadel-Turonski, P., Skoupil, D., Sarantsev, A.V., Watts, D.P., Amaryan, M.J., Angelini, G., Armstrong, W.R., Atac, H., Avakian, H., Barion, L., Bashkanov, M., Battaglieri, M., Bedlinskiy, I., Benmokhtar, F., Bianconi, A., Biondo, L., Biselli, A.S., Bondi, M., Bossù, F., Boiarinov, S., Briscoe, W.J., Brooks, W.K., Bulumulla, D., Burkert, V.D., Carman, D.S., Carvajal, J.C., Celentano, A., Chatagnon, P., Chetry, T., Ciullo, G., Clark, L., Cole, P.L., Contalbrigo, M., Costantini, G., Crede, V., d'Angelo, A., Dashyan, N., de Vita, R., Defurne, M., Deur, A., Diehl, S., Djalali, C., Dupre, R., Dugger, M., Egiyan, H., Ehrhart, M., El Alaoui, A., El Fassi, L., Eugenio, P., Fedotov, G., Fegan, S., Filippi, A., Fradi, A., Gavalian, G., Gilfoyle, G.P., Girod, F.X., Gleason, C., Golubenko, A.A., Gothe, R.W., Griffioen, K.A., Guidal, M., Hafidi, K., Hakobyan, H., Hattawy, M., Hayward, T.B., Heddle, D., Hicks, K., Hobart, A., Holtrop, M., Ireland, D.G., Isupov, E.L., Jenkins, D., Jo, H.S., Joo, K., Keller, D., Khanal, A., Khandaker, M., Kim, A., Klein, F.J., Kripko, A., Kubarovsky, V., Lanza, L., Leali, M., Livingston, K., Macgregor, I.J.D., Marchand, D., Markov, N., Marsicano, L., Mascagna, V., Mckinnon, B., Migliorati, S., Mineeva, T., Mirazita, M., Mokeev, V., Munoz Camacho, C., Neupane, K., Niccolai, S., Niculescu, G., O'Connell, T.R., Osipenko, M., Ostrovidov, A.I., Pandey, P., Paolone, M., Pappalardo, L.L., Paremuzyan, R., Pasyuk, E., Phelps, W., Pogorelko, O., Price, J.W., Prok, Y., Raue, B.A., Ripani, M., Ritman, J., Rizzo, A., Rosner, G., Rowley, J., Sabatie, F., Salgado, C., Schmidt, A., Schumacher, R.A., Sharabian, Y.G., Shirokov, E.V., Shrestha, U., Sokhan, D., Soto, O., Sparveris, N., Stepanyan, S., Stoler, P., Strakovsky, I.I., Strauch, S., Tyson, R., Ungaro, M., Venturelli, L., Voskanyan, H., Vossen, A., Voutier, E., Wei, K., Wei, X., Wishart, R., Wood, M.H., Yale, B., Zhang, J., Zhao, Z.W., Institut de Recherches sur les lois Fondamentales de l'Univers (IRFU), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay, Laboratoire de Physique des 2 Infinis Irène Joliot-Curie (IJCLab), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Paris-Saclay-Centre National de la Recherche Scientifique (CNRS), and CLAS
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accelerator ,partial wave ,nucleon ,[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex] ,photon: energy ,resonance: coupling ,High Energy Physics - Experiment ,CLAS ,[PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex] ,branching ratio ,hyperon: photoproduction ,Nuclear Experiment ,photon: beam ,isobar model ,asymmetry ,Jefferson Lab ,experimental results - Abstract
We report a new measurement of the beam-spin asymmetry $\boldsymbol{\Sigma}$ for the $\vec{\gamma} n \rightarrow K^+\Sigma^-$ reaction using quasi-free neutrons in a liquid-deuterium target. The new dataset includes data at previously unmeasured photon energy and angular ranges, thereby providing new constraints on partial wave analyses used to extract properties of the excited nucleon states. The experimental data were obtained using the CEBAF Large Acceptance Spectrometer (CLAS), housed in Hall B of the Thomas Jefferson National Accelerator Facility (JLab). The CLAS detector measured reaction products from a liquid-deuterium target produced by an energy-tagged, linearly polarised photon beam with energies in the range 1.1 to 2.3 GeV. Predictions from an isobar model indicate strong sensitivity to $N(1720)3/2^+$, $\Delta(1900)1/2^-$, and $N(1895)1/2^-$, with the latter being a state not considered in previous photoproduction analyses. When our data are incorporated in the fits of partial-wave analyses, one observes significant changes in $\gamma$-$n$ couplings of the resonances which have small branching ratios to the $\pi N$ channel., Comment: 9 pages, 4 figures, Hadron Spectroscopy
- Published
- 2022
- Full Text
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157. Polarized structure function $\sigma_{LT'}$ from $\pi^0 p$ electroproduction data in the resonance region at 0.4GeV$^2$<Q$^2$<1.0GeV$^2$
- Author
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Isupov, E. L., Burkert, V. D., Golubenko, A. A., Joo, K., Markov, N. S., Mokeev, V. I., Smith, L. C., Armstrong, W. R., Atac, H., Avakian, H., Baltzell, N. A., Barion, L., Battaglieri, M., Bedlinskiy, I., Benmokhtar, F., Bianconi, A., Biondo, L., Biselli, A. S., Bondi, M., Bossù, F., Briscoe, W. J., Brooks, W. K., Bulumulla, D., Capobianco, R. A., Carman, D. S., Carvajal, J. C., Chatagnon, P., Chesnokov, V., Ciullo, G., Cole, P. L., Clary, B. A., Contalbrigo, M., Costantini, G., D'Angelo, A., Dashyan, N., De Vita, R., Defurne, M., Deur, A., Diehl, S., Djalali, C., Dupre, R., Egiyan, H., Alaoui, A. El, Fassi, L. El, Elouadrhiri, L., Eugenio, P., Fegan, S., Filippi, A., Gavalian, G., Gilfoyle, G. P., Glazier, D. I., Gothe, R. W., Griffioen, K. A., Guidal, M., Guo, L., Hafidi, K., Hakobyan, H., Hattawy, M., Hayward, T. B., Heddle, D., Hicks, K., Hobart, A., Holtrop, M., Illari, I., Ireland, D. G., Jenkins, D., Jo, H. S., Keller, D., Khanal, A., Khandaker, M., Kim, A., Kim, W., Klein, F. J., Klimenko, V., Kripko, A., Kubarovsky, V., Lagerquist, V., Lanza, L., Leali, M., Lenisa, P., Livingston, K., MacGregor, I. J. D., Marchand, D., Marsicano, L., Mascagna, V., McKinnon, B., Meziani, Z. E., Migliorati, S., Mineeva, T., Mirazita, M., Camacho, C. Munoz, Nadel-Turonski, P., Neupane, K., Niccolai, S., O'Connell, T., Osipenko, M., Pandey, P., Paolone, M., Pappalardo, L. L., Paremuzyan, R., Pasyuk, E., Paul, S. J., Phelps, W., Pilleux, N., Pogorelko, O., Poudel, J., Price, J. W., Prok, Y., Raue, B. A., Reed, T., Ripani, M., Ritman, J., Rowley, J., Sabatié, F., Salgado, C., Schmidt, A., Schumacher, R. A., Sharabian, Y. G., Shirokov, E. V., Shrestha, U., Simmerling, P., Sokhan, D., Sparveris, N., Stepanyan, S., Strakovsky, I. I., Strauch, S., Tan, J. A., Tyson, R., Ungaro, M., Vallarino, S., Venturelli, L., Voskanyan, H., Voutier, E., Watts, D., Wei, K., Wei, X., Wood, M. H., Yale, B., Zachariou, N., Zhang, J., Ziegler, V., Institut de Recherches sur les lois Fondamentales de l'Univers (IRFU), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay, Laboratoire de Physique des 2 Infinis Irène Joliot-Curie (IJCLab), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Paris-Saclay-Centre National de la Recherche Scientifique (CNRS), and CLAS
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[PHYS.NUCL]Physics [physics]/Nuclear Theory [nucl-th] ,polarized beam ,nucleon resonance ,final state ,GeV ,spin ,energy dependence ,differential cross section: measured ,structure function ,CLAS ,Nuclear Experiment ,final state: mass ,photon ,electroproduction ,sensitivity ,structure function: polarization ,angular dependence ,differential cross section ,pi0: electroproduction ,measured ,mass ,High Energy Physics::Experiment ,spin: asymmetry ,asymmetry ,experimental results ,Jefferson Lab - Abstract
The first results on the $\sigma_{LT'}$ structure function in exclusive $\pi^0p$ electroproduction at invariant masses of the final state of 1.5 GeV $, Comment: 7 pages, 3 figures
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- 2022
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158. Improved <math><mrow><mi>Λ</mi><mi>p</mi></mrow></math> Elastic Scattering Cross Sections between 0.9 and <math><mrow><mn>2.0</mn><mtext> </mtext><mtext> </mtext><mi>GeV</mi><mo>/</mo><mi>c</mi></mrow></math> as a Main Ingredient of the Neutron Star Equation of State
- Author
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Rowley, J., Compton, N., Djalali, C., Hicks, K., Price, J., Zachariou, N., Adhikari, K. P., Armstrong, W. R., Atac, H., Baashen, L., Barion, L., Bashkanov, M., Battaglieri, M., Bedlinskiy, I., Benmokhtar, F., Bianconi, A., Biondo, L., Biselli, A. S., Bondi, M., Bossù, F., Boiarinov, S., Briscoe, W. J., Brooks, W. K., Bulumulla, D., Burkert, V. D., Carman, D. S., Carvajal, J. C., Celentano, A., Chatagnon, P., Chesnokov, V., Chetry, T., Ciullo, G., Clark, L., Cole, P. L., Contalbrigo, M., Costantini, G., Crede, V., D’Angelo, A., Dashyan, N., De Vita, R., Defurne, M., Deur, A., Diehl, S., Dupré, R., Egiyan, H., Ehrhart, M., El Alaoui, A., El Fassi, L., Eugenio, P., Fedotov, G., Fegan, S., Fersch, R., Filippi, A., Fradi, A., Gavalian, G., Girod, F. X., Glazier, D. I., Golubenko, A., Gothe, R. W., Griffioen, K., Guo, L., Hafidi, K., Hakobyan, H., Hattawy, M., Hayward, T. B., Heddle, D., Hobart, A., Holtrop, M., Ilieva, Y., Ireland, D. G., Isupov, E. L., Jenkins, D., Jo, H. S., Joo, K., Keller, D., Khanal, A., Khandaker, M., Kim, A., Korover, I., Kripko, A., Kubarovsky, V., Kuhn, S. E., Lanza, L., Leali, M., Lenisa, P., Livingston, K., MacGregor, I. J. D., Marchand, D., Markov, N., Marsicano, L., Mascagna, V., McCracken, M. E., McKinnon, B., McLauchlin, C., Meziani, Z. E., Migliorati, S., Mineeva, T., Mirazita, M., Mokeev, V., Munevar, E., Munoz Camacho, C., Nadel-Turonski, P., Neupane, K., Niccolai, S., Niculescu, G., O’Connell, T. R., Osipenko, M., Ostrovidov, A. I., Pandey, P., Paolone, M., Pappalardo, L. L., Pasyuk, E., Pogorelko, O., Prok, Y., Reed, T., Ripani, M., Ritman, J., Rizzo, A., Rosner, G., Sabatie, F., Salgado, C., Schmidt, A., Schumacher, R. A., Sharabian, Y. G., Shrestha, U., Sokhan, D., Soto, O., Sparveris, N., Strakovsky, I. I., Strauch, S., Tyson, R., Ungaro, M., Venturelli, L., Voskanyan, H., Vossen, A., Voutier, E., Watts, D. P., Wei, K., Wei, X., Wishart, R., Wood, M. H., Yale, B., Yurov, M., Zhang, J., and Zhao, Z. W.
- Abstract
Strange matter is believed to exist in the cores of neutron stars based on simple kinematics. If this is true, then hyperon-nucleon interactions will play a significant part in the neutron star equation of state. Yet, compared to other elastic scattering processes, there is very little data on Λ−N scattering. This experiment utilized the CEBAF Large Acceptance Spectrometer (CLAS) detector to study the Λp→Λp elastic scattering cross section in the incident Λ momentum range 0.9–2.0 GeV/c. These are the first data on this reaction since the 1970s. The new cross sections have significantly better accuracy and precision than the existing world data, and the techniques developed here can also be used in future experiments.
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- 2021
159. First measurement of timelike Compton scattering
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Chatagnon, P., Niccolai, S., Stepanyan, S., Amaryan, M. J., Angelini, G., Armstrong, W. R., Atac, H., Gayoso, C. Ayerbe, Baltzell, N. A., Barion, L., Bashkanov, M., Battaglieri, M., Bedlinskiy, I., Benmokhtar, F., Bianconi, A., Biondo, L., Biselli, A. S., Bondi, M., Bossù, F., Boiarinov, S., Briscoe, W. J., Brooks, W. K., Bulumulla, D., Burkert, V. D., Carman, D. S., Carvajal, J. C., Caudron, M., Celentano, A., Chetry, T., Ciullo, G., Clark, L., Cole, P. L., Contalbrigo, M., Costantini, G., Crede, V., D'Angelo, A., Dashyan, N., Defurne, M., De Vita, R., Deur, A., Diehl, S., Djalali, C., Dupré, R., Egiyan, H., Ehrhart, M., Alaoui, A. El, Fassi, L. El, Elouadrhiri, L., Fegan, S., Fersch, R., Filippi, A., Gavalian, G., Ghandilyan, Y., Gilfoyle, G. P., Girod, F. X., Glazier, D. I., Golubenko, A. A., Gothe, R. W., Gotra, Y., Griffioen, K. A., Guidal, M., Guo, L., Hakobyan, H., Hattawy, M., Hayward, T. B., Heddle, D., Hobart, A., Holtrop, M., Hyde, C. E., Ilieva, Y., Ireland, D. G., Isupov, E. L., Jo, H. S., Joo, K., Kabir, M. L., Keller, D., Khachatryan, G., Khanal, A., Kim, A., Kim, W., Kripko, A., Kubarovsky, V., Kuhn, S. E., Lanza, L., Leali, M., Lee, S., Lenisa, P., Livingston, K., MacGregor, I . J . D., Marchand, D., Marsicano, L., Mascagna, V., Mckinnon, B., McLauchlin, C., Migliorati, S., Mirazita, M., Mokeev, V., Montgomery, R. A., Camacho, C. Munoz, Nadel-Turonski, P., Naidoo, P., Neupane, K., O'Connell, T. R., Osipenko, M., Ouillon, M., Pandey, P., Paolone, M., Pappalardo, L. L., Paremuzyan, R., Pasyuk, E., Phelps, W., Pogorelko, O., Poudel, J., Price, J. W., Prok, Y., Raue, B. A., Reed, T., Ripani, M., Rizzo, A., Rossi, P., Rowley, J., Sabatié, F., Schmidt, A., Segarra, E. P., Sharabian, Y. G., Shirokov, E. V., Shrestha, U., Sokhan, D., Soto, O., Sparveris, N., Strakovsky, I. I., Strauch, S., Tyler, N., Tyson, R., Ungaro, M., Vallarino, S., Venturelli, L., Voskanyan, H., Vossen, A., Voutier, E., Watts, D. P., Wei, K., Wei, X., Wishart, R., Yale, B., Zachariou, N., Zhang, J., Zhao, Z. W., Collaboration, the CLAS, Laboratoire de Physique des 2 Infinis Irène Joliot-Curie (IJCLab), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Paris-Saclay-Centre National de la Recherche Scientifique (CNRS), Istituto Nazionale di Fisica Nucleare, Sezione di Genova (INFN, Sezione di Genova), and Istituto Nazionale di Fisica Nucleare (INFN)
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gpds ,electroproduction ,pressure ,proton ,Physics ,Astrophysics::High Energy Astrophysical Phenomena ,Socio-culturale ,General Physics and Astronomy ,FOS: Physical sciences ,01 natural sciences ,High Energy Physics - Experiment ,General Relativity and Quantum Cosmology ,High Energy Physics - Experiment (hep-ex) ,Economica ,PE2_2 ,PE2_1 ,0103 physical sciences ,010306 general physics ,Nuclear Experiment ,PE2_3 ,[PHYS]Physics [physics] ,Parton Distribution Functions ,010308 nuclear & particles physics ,Settore FIS/04 ,Quark model of nucleons ,QCD ,Compton Scattering ,High Energy Physics::Experiment - Abstract
We present the first measurement of the timelike Compton scattering process, γp→p′γ*(γ*→e+e−), obtained with the CLAS12 detector at Jefferson Lab. The photon beam polarization and the decay lepton angular asymmetries are reported in the range of timelike photon virtualities 2.25
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- 2021
160. On enterprise performance evaluation based on the method of eigenstates
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Mokeev, V. V.
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- 2014
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161. Evaluation of fully integrated γ v p → π+π− p cross sections in the resonance region at photon virtualities 5 < Q 2 < 12 GeV2
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Burkert, V., Golovatch, E. N., Isupov, E. L., Ishkhanov, B. S., Mokeev, V. I., Petrun’kin, G. V., Skorodumina, J. A., and Fedotov, G. V.
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- 2014
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162. Electron-beam energy reconstruction for neutrino oscillation measurements
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Khachatryan, M., Papadopoulou, A., Ashkenazi, A., Hauenstein, F., Nambrath, A., Hrnjic, A., Weinstein, L. B., Hen, O., Piasetzky, E., Betancourt, M., Dytman, S., Mahn, K., Coloma, P., Adhikari, S., Amaryan, M. J., Angelini, Giovanni, Atac, H., Barion, L., Battaglieri, M., Bedlinskiy, I., Beck, A., Benmokhtar, F., Bianconi, A., Biselli, A. S., Bossu, F., Boiarinov, S., Briscoe, W. J., Brooks, W. K., Bulumulla, D., Burkert, V. D., Carman, D. S., Carvajal, J. C., Celentano, A., Chatagnon, P., Chesnokov, V., Chetry, T., Ciullo, G., Clark, Louise, Clary, B. A., Cohen, E. O., Cole, P. L., Contalbrigo, M., Crede, V., Cruz-Torres, R., D’Angelo, A., Dashyan, N., De Vita, R., Defurne, M., Denniston, A., Deur, A., Diehl, S., Djalali, C., Duer, M., Dupre, R., Egiyan, H., Ehrhart, M., El Alaoui, A., El Fassi, L., Elouadrhiri, L., Eugenio, P., Fersch, R., Filippi, A., Forest, T. A., Gavalian, G., Gilfoyle, G. P., Giovanetti, K. L., Girod, F. X., Glazier, D. I., Golovatch, E., Gothe, R. W., Griffioen, K. A., Guidal, M., Guo, L., Hakobyan, H., Hattawy, M., Hayward, T. B., Heddle, D., Hicks, K., Hobart, A., Holtrop, M., Ilieva, Y., Ireland, D. G., Ishkhanov, B. S., Isupov, E. L., Jo, H. S., Joo, K., Keller, D., Khanal, A., Khandaker, M., Kim, C. W., Kim, W., Korover, I., Kubarovsky, V., Kuhn, S. E., Lanza, L., Leali, M., Lenisa, P., Livingston, K., MacGregor, I. J. D., Marchand, D., Markov, N., Marsicano, L., Mascagna, V., McKinnon, B., May-Tal Beck, S., Mineeva, T., Mirazita, M., Mokeev, V., Movsisyan, A., Munoz Camacho, C., Nadel-Turonski, P., Neupane, K., Niccolai, S., Niculescu, G., Osipenko, M., Ostrovidov, A. I., Paolone, M., Pappalardo, L. L., Paremuzyan, R., Park, K., Pasyuk, E., Pogorelko, O., Poudel, J., Prok, Y., Protopopescu, D., Pybus, J., Ripani, M., Raue, B., Ritman, J., Rizzo, A., Rosner, G., Rossi, P., Sabati, F., Salgado, C., Schmidt, A., Schumacher, R. A., Segarra, E. P., Sharabian, Y. G., Shrestha, U., Skorodumina, Iu., Sokhan, D., Soto, O., Sparveris, N., Stepanyan, S., Strakovsky, I. I., Strauch, S., Tyler, N., Tyson, R., Ungaro, M., Venturelli, L., Voskanyan, H., Voutier, E., Watts, D., Wei, X., Wood, M. H., Zachariou, N., Zhang, J., Zhao, Z. W., Dolan, S., Megias, G. D., Gardiner, S., and Old Dominion University [Norfolk] (ODU)
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Standard Model ,media_common.quotation_subject ,Socio-culturale ,neutrino-nucleus interactions ,01 natural sciences ,7. Clean energy ,Neutrino Oscillations ,Pion ,Economica ,PE2_2 ,PE2_1 ,0103 physical sciences ,010306 general physics ,Neutrino oscillation ,PE2_4 ,ComputingMilieux_MISCELLANEOUS ,media_common ,Physics ,[PHYS]Physics [physics] ,Multidisciplinary ,Muon ,010308 nuclear & particles physics ,Oscillation ,Settore FIS/04 ,Ambientale ,Universe ,Computational physics ,electron scattering ,Neutrino ,Beam (structure) - Abstract
Neutrinos exist in one of three types or ‘flavours’—electron, muon and tau neutrinos—and oscillate from one flavour to another when propagating through space. This phenomena is one of the few that cannot be described using the standard model of particle physics (reviewed in ref. 1), and so its experimental study can provide new insight into the nature of our Universe (reviewed in ref. 2). Neutrinos oscillate as a function of their propagation distance (L) divided by their energy (E). Therefore, experiments extract oscillation parameters by measuring their energy distribution at different locations. As accelerator-based oscillation experiments cannot directly measure E, the interpretation of these experiments relies heavily on phenomenological models of neutrino–nucleus interactions to infer E. Here we exploit the similarity of electron–nucleus and neutrino–nucleus interactions, and use electron scattering data with known beam energies to test energy reconstruction methods and interaction models. We find that even in simple interactions where no pions are detected, only a small fraction of events reconstruct to the correct incident energy. More importantly, widely used interaction models reproduce the reconstructed energy distribution only qualitatively and the quality of the reproduction varies strongly with beam energy. This shows both the need and the pathway to improve current models to meet the requirements of next-generation, high-precision experiments such as Hyper-Kamiokande (Japan)3 and DUNE (USA)4. Electron scattering measurements are shown to reproduce only qualitatively state-of-the-art lepton–nucleus energy reconstruction models, indicating that improvements to these particle-interaction models are required to ensure the accuracy of future high-precision neutrino oscillation experiments.
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- 2021
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163. Improved Λp Elastic Scattering Cross Sections between 0.9 and 2.0 GeV/c as a Main Ingredient of the Neutron Star Equation of State
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Rowley, J., Compton, N., Djalali, C., Hicks, K., Price, J., Zachariou, N., Adhikari, K. P., Armstrong, W. R., Atac, H., Baashen, L., Barion, L., Bashkanov, M., Battaglieri, M., Bedlinskiy, I., Benmokhtar, F., Bianconi, A., Biondo, L., Biselli, A. S., Bondi, M., Bossù, F., Boiarinov, S., Briscoe, W. J., Brooks, W. K., Bulumulla, D., Burkert, V. D., Carman, D. S., Carvajal, J. C., Celentano, A., Chatagnon, P., Chesnokov, V., Chetry, T., Ciullo, G., Clark, Louise, Cole, P. L., Contalbrigo, M., Costantini, G., Crede, V., D’Angelo, A., Dashyan, N., De Vita, R., Defurne, M., Deur, A., Diehl, S., Dupré, R., Egiyan, H., Ehrhart, M., El Alaoui, A., El Fassi, L., Eugenio, P., Fedotov, G., Fegan, S., Fersch, R., Filippi, A., Fradi, A., Gavalian, G., Girod, F. X., Glazier, Derek I., Golubenko, A., Gothe, R. W., Griffioen, K., Guo, L., Hafidi, K., Hakobyan, H., Hattawy, M., Hayward, T. B., Heddle, D., Hobart, A., Holtrop, M., Ilieva, Y., Ireland, David G., Isupov, E. L., Jenkins, D., Jo, H. S., Joo, K., Keller, D., Khanal, A., Khandaker, M., Kim, A., Korover, I., Kripko, A., Kubarovsky, V., Kuhn, S. E., Lanza, L., Leali, M., Lenisa, P., Livingston, Kenneth, MacGregor, I. J. Douglas, Marchand, D., Markov, N., Marsicano, L., Mascagna, V., McCracken, M. E., McKinnon, Bryan, McLauchlin, C., Meziani, Z. E., Migliorati, S., Mineeva, T., Mirazita, M., Mokeev, V., Munevar, E., Munoz Camacho, C., Nadel-Turonski, P., Neupane, K., Niccolai, S., Niculescu, G., O’Connell, T. R., Osipenko, M., Ostrovidov, A. I., Pandey, P., Paolone, M., Pappalardo, L. L., Pasyuk, E., Pogorelko, O., Prok, Y., Reed, T., Ripani, M., Ritman, J., Rizzo, A., Rosner, Guenther, Sabatie, F., Salgado, C., Schmidt, A., Schumacher, R. A., Sharabian, Y. G., Shrestha, U., Sokhan, Daria, Soto, O., Sparveris, N., Strakovsky, I. I., Strauch, S., Tyson, Richard, Ungaro, M., Venturelli, L., Voskanyan, H., Vossen, A., Voutier, E., Watts, D. P., Wei, K., Wei, X., Wishart, Robert, Wood, M. H., Yale, B., Yurov, M., Zhang, J., and Zhao, Z. W.
- Subjects
Hyperons in neutron stars ,Economica ,PE2_2 ,PE2_1 ,Settore FIS/04 ,Nuclear Theory ,Socio-culturale ,Ambientale ,ddc:530 ,Hyperons's Scattering ,Nuclear Experiment ,PE2_3 - Abstract
Strange matter is believed to exist in the cores of neutron stars based on simple kinematics. If this is true, then hyperon-nucleon interactions will play a significant part in the neutron star equation of state. Yet, compared to other elastic scattering processes, there is very little data on \ud Λ\ud −\ud N\ud scattering. This experiment utilized the CEBAF Large Acceptance Spectrometer (CLAS) detector to study the \ud Λ\ud p\ud →\ud Λ\ud p\ud elastic scattering cross section in the incident \ud Λ\ud momentum range \ud 0.9\ud –\ud 2.0\ud \ud \ud GeV\ud /\ud c\ud . These are the first data on this reaction since the 1970s. The new cross sections have significantly better accuracy and precision than the existing world data, and the techniques developed here can also be used in future experiments.
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- 2021
- Full Text
- View/download PDF
164. First multidimensional, high precision measurements of semi-inclusive $\pi^+$ beam single spin asymmetries from the proton over a wide range of kinematics
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DIEHL, S., KIM, A., ANGELINI, G., JOO, K., ADHIKARI, S., AMARYAN, M., ARRATIA, M., ATAC, H., AVAKIAN, H., GAYOSO, C. Ayerbe, BALTZELL, N.A., BARION, L., BASTAMI, S., BATTAGLIERI, M., BEDLINSKIY, I., BENMOKHTAR, F., BIANCONI, A., BISELLI, A.S., BONDI, M., BOSSÙ, F., BOIARINOV, S., BRINKMANN, K.-T., BRISCOE, W.J., BROOKS, W., BULUMULLA, D., BURKERT, V.D., CARMAN, D.S., CARVAJAL, J.C., CELENTANO, A., CHATAGNON, P., CHETRY, T., CIULLO, G., CLARK, L., CLARY, B.A., COLE, P.L., CONTALBRIGO, M., COSTANTINI, G., CREDE, V., D'ANGELO, A., DASHYAN, N., DE VITA, R., DEFURNE, M., DEUR, A., DILKS, C., DJALALI, C., DUGGER, M., DUPRE, R., EHRHART, M., ALAOUI, A. El, FASSI, L. El, ELOUADRHIRI, L., FEGAN, S., FILIPPI, A., FOREST, T., GAVALIAN, G., GILFOYLE, G.P., GIROD, F.X., GLAZIER, D.I., GOLUBENKO, A.A., GOTHE, R.W., GOTRA, Y., GRIFFIOEN, K.A., GUIDAL, M., HAFIDI, K., HAKOBYAN, H., HATTAWY, M., HAYWARD, T.B., HEDDLE, D., HICKS, K., HOBART, A., HOLTROP, M., HYDE, C.E., IRELAND, D.G., ISUPOV, E.L., JO, H.S., JOHNSTON, R., JOOSTEN, S., KELLER, D., KHACHATRYAN, M., KHANAL, A., KIM, W., KRIPKO, A., KUBAROVSKY, V., KUHN, S.E., LANZA, L., LEALI, M., LEE, S., LENISA, P., LIVINGSTON, K., LU, Z., MACGREGOR, I.J.D., MARCHAND, D., MARKOV, N., MARSICANO, L., MASCAGNA, V., MCKINNON, B., MEZIANI, Z.E., MILNER, R.G., MINEEVA, T., MIRAZITA, M., MOKEEV, V., MORAN, P., MOVSISYAN, A., MUNOZ CAMACHO, C., NADEL-TURONSKI, P., NAIDOO, P., NEUPANE, K., NICCOLAI, S., NICULESCU, G., O'CONNELL, T.R., OSIPENKO, M., PAOLONE, M., PAPPALARDO, L.L., PAREMUZYAN, R., PASYUK, E., PHELPS, W., POGORELKO, O., PROK, Y., PROKUDIN, A., RAUE, B.A., RIPANI, M., RITMAN, J., RIZZO, A., ROBERTS, C.D., ROSSI, P., ROWLEY, J., SABATIÉ, F., SALGADO, C., SCHMIDT, A., SEGARRA, E.P., SHARABIAN, Y.G., SHRESTHA, U., SOTO, O., SPARVERIS, N., STEPANYAN, S., STOLER, P., STRAKOVSKY, I.I., STRAUCH, S., TEZGIN, K., THORNTON, A., TYLER, N., TYSON, R., UNGARO, M., VENTURELLI, L., VOSKANYAN, H., VOSSEN, A., VOUTIER, E., WATTS, D.P., WEI, K., WEI, X., XU, S.-S., YALE, B., ZACHARIOU, N., ZHANG, J., Institut de Recherches sur les lois Fondamentales de l'Univers (IRFU), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay, Laboratoire de Physique des 2 Infinis Irène Joliot-Curie (IJCLab), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Paris-Saclay-Centre National de la Recherche Scientifique (CNRS), and CLAS
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deep inelastic scattering: semi-inclusive reaction ,precision measurement ,nucleon ,pi+: electroproduction ,parton: distribution function ,structure function: ratio ,polarized beam ,quark gluon: correlation ,transverse momentum dependence ,kinematics ,CLAS ,[PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex] ,High Energy Physics::Experiment ,twist: 3 ,electron: beam ,higher-dimensional ,Nuclear Experiment ,spin: asymmetry ,experimental results ,Jefferson Lab - Abstract
High precision measurements of the polarized electron beam-spin asymmetry in semi-inclusive deep inelastic scattering (SIDIS) from the proton have been performed using a 10.6 GeV incident electron beam and the CLAS12 spectrometer at Jefferson Lab. We report here the first multidimensional study of single $\pi^+$ SIDIS data over a large kinematic range in $z$, $x_B$, $P_T$ and virtualities $Q^2$ ranging from 1 GeV$^2$ up to 7 GeV$^2$. In particular, the structure function ratio $F_{LU}^{\sin\phi}/F_{UU}$ has been determined, where $F_{LU}^{\sin\phi}$ is a twist-3 quantity that can reveal novel properties of quark-gluon correlations within the nucleon. The impact of the data on the evolving understanding of the underlying reaction mechanisms and their kinematic variation is explored using theoretical models for the different contributing transverse momentum dependent parton distribution functions.
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- 2021
165. Evidence for a backward peak in the γd → π0d cross section near the η threshold
- Author
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Ilieva, Y., Berman, B. L., Kudryavtsev, A. E., Strakovsky, I. I., Tarasov, V. E., Amarian, M., Ambrozewicz, P., Anghinolfi, M., Asryan, G., Avakian, H., Bagdasaryan, H., Baillie, N., Ball, J. P., Baltzell, N. A., Batourine, V., Battaglieri, M., Bedlinskiy, I., Bellis, M., Benmouna, N., Biselli, A. S., Bouchigny, S., Boiarinov, S., Bradford, R., Branford, D., Briscoe, W. J., Brooks, W. K., Bültmann, S., Burkert, V. D., Butuceanu, C., Calarco, J. R., Careccia, S. L., Carman, D. S., Chen, S., Cole, P. L., Collins, P., Coltharp, P., Crabb, D., Crede, V., De Masi, R., De Sanctis, E., De Vita, R., Degtyarenko, P. V., Deur, A., Dickson, R., Djalali, C., Dodge, G. E., Donnelly, J., Doughty, D., Dugger, M., Dzyubak, O. P., Egiyan, H., Egiyan, K. S., Elouadrhiri, L., Eugenio, P., Fedotov, G., Feldman, G., Funsten, H., Garçon, M., Gavalian, G., Gilfoyle, G. P., Giovanetti, K. L., Girod, F. X., Goetz, J. T., Gonenc, A., Gothe, R. W., Griffioen, K. A., Guidal, M., Guler, N., Guo, L., Gyurjyan, V., Hafidi, K., Hakobyan, R. S., Hersman, F. W., Hicks, K., Hleiqawi, I., Holtrop, M., Hyde-Wright, C. E., Ireland, D. G., Ishkhanov, B. S., Isupov, E. L., Ito, M. M., Jenkins, D., Jo, H. S., Joo, K., Juengst, H. G., Kalantarians, N., Kellie, J. D., Khandaker, M., Kim, W., Klein, A., Klein, F. J., Kossov, M., Krahn, Z., Kramer, L. H., Kubarovsky, V., Kuhn, J., Kuhn, S. E., Kuleshov, S. V., Lachniet, J., Laget, J. M., Langheinrich, J., Lawrence, D., Livingston, K., Lu, H., MacCormick, M., Markov, N., McKinnon, B., Mecking, B. A., Mestayer, M. D., Meyer, C. A., Mibe, T., Mikhailov, K., Mirazita, M., Miskimen, R., Mokeev, V., Moriya, K., Morrow, S. A., Moteabbed, M., Munevar, E., Mutchler, G. S., Nadel-Turonski, P., Nasseripour, R., Niccolai, S., Niculescu, G., Niculescu, I., Niczyporuk, B. B., Niroula, M. R., Niyazov, R. A., Nozar, M., Osipenko, M., Ostrovidov, A. I., Park, K., Pasyuk, E., Paterson, C., Pierce, J., Pivnyuk, N., Pogorelko, O., Pozdniakov, S., Price, J. W., Prok, Y., Protopopescu, D., Raue, B. A., Ricco, G., Ripani, M., Ritchie, B. G., Ronchetti, F., Rosner, G., Rossi, P., Sabatié, F., Salgado, C., Santoro, J. P., Sapunenko, V., Schumacher, R. A., Serov, V. S., Sharabian, Y. G., Shvedunov, N. V., Smith, E. S., Smith, L. C., Sober, D. I., Stavinsky, A., Stepanyan, S. S., Stepanyan, S., Stokes, B. E., Stoler, P., Strauch, S., Taiuti, M., Tedeschi, D. J., Thoma, U., Tkabladze, A., Tkachenko, S., Tur, C., Ungaro, M., Vineyard, M. F., Vlassov, A. V., Watts, D. P., Weinstein, L. B., Weygand, D. P., Williams, M., Wolin, E., Wood, M. H., Yegneswaran, A., Zana, L., Zhang, J., Zhao, B., Zhao, Z., and The CLAS Collaboration
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- 2010
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166. NUCLEAR PHYSICS: Momentum sharing in imbalanced Fermi systems
- Author
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Hen, O., Sargsian, M., Weinstein, L. B., Piasetzky, E., Hakobyan, H., Higinbotham, D. W., Braverman, M., Brooks, W. K., Gilad, S., Adhikari, K. P., Arrington, J., Asryan, G., Avakian, H., Ball, J., Baltzell, N. A., Battaglieri, M., Beck, A., Beck, May-Tal S., Bedlinskiy, I., Bertozzi, W., Biselli, A., Burkert, V. D., Cao, T., Carman, D. S., Celentano, A., Chandavar, S., Colaneri, L., Cole, P. L., Crede, V., DʼAngelo, A., De Vita, R., Deur, A., Djalali, C., Doughty, D., Dugger, M., Dupre, R., Egiyan, H., El Alaoui, A., El Fassi, L., Elouadrhiri, L., Fedotov, G., Fegan, S., Forest, T., Garillon, B., Garcon, M., Gevorgyan, N., Ghandilyan, Y., Gilfoyle, G. P., Girod, F. X., Goetz, J. T., Gothe, R. W., Griffioen, K. A., Guidal, M., Guo, L., Hafidi, K., Hanretty, C., Hattawy, M., Hicks, K., Holtrop, M., Hyde, C. E., Ilieva, Y., Ireland, D. G., Ishkanov, B. I., Isupov, E. L., Jiang, H., Jo, H. S., Joo, K., Keller, D., Khandaker, M., Kim, A., Kim, W., Klein, F. J., Koirala, S., Korover, I., Kuhn, S. E., Kubarovsky, V., Lenisa, P., Levine, W. I., Livingston, K., Lowry, M., Lu, H. Y., MacGregor, I. J. D., Markov, N., Mayer, M., McKinnon, B., Mineeva, T., Mokeev, V., Movsisyan, A., Camacho, Munoz C., Mustapha, B., Nadel-Turonski, P., Niccolai, S., Niculescu, G., Niculescu, I., Osipenko, M., Pappalardo, L. L., Paremuzyan, R., Park, K., Pasyuk, E., Phelps, W., Pisano, S., Pogorelko, O., Price, J. W., Procureur, S., Prok, Y., Protopopescu, D., Puckett, A. J. R, Rimal, D., Ripani, M., Ritchie, B. G., Rizzo, A., Rosner, G., Roy, P., Rossi, P., Sabatié, F., Schott, D., Schumacher, R. A., Sharabian, Y. G., Smith, G. D., Shneor, R., Sokhan, D., Stepanyan, S. S., Stepanyan, S., Stoler, P., Strauch, S., Sytnik, V., Taiuti, M., Tkachenko, S., Ungaro, M., Vlassov, A. V., Voutier, E., Walford, N. K., Wei, X., Wood, M. H., Wood, S. A., Zachariou, N., Zana, L., Zhao, Z. W., Zheng, X., and Zonta, I.
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- 2014
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167. Contributions of exclusive pion electroproduction reactions to inclusive structure functions
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Chesnokov, V. V., Mokeev, V. I., Golovach, E. N., Ishkhanov, B. S., Stepanov, M. E., and Fedotov, G. V.
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- 2009
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168. Exclusive ρ0 electroproduction on the proton at CLAS
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Morrow, S. A., Guidal, M., Garçon, M., Laget, J. M., Smith, E. S., Adams, G., Adhikari, K. P., Aghasyan, M., Amaryan, M. J., Anghinolfi, M., Asryan, G., Audit, G., Avakian, H., Bagdasaryan, H., Baillie, N., Ball, J. P., Baltzell, N. A., Barrow, S., Battaglieri, M., Bedlinskiy, I., Bektasoglu, M., Bellis, M., Benmouna, N., Berman, B. L., Biselli, A. S., Blaszczyk, L., Bonner, B. E., Bookwalter, C., Bouchigny, S., Boiarinov, S., Bradford, R., Branford, D., Briscoe, W. J., Brooks, W. K., Bültmann, S., Burkert, V. D., Butuceanu, C., Calarco, J. R., Careccia, S. L., Carman, D. S., Carnahan, B., Casey, L., Cazes, A., Chen, S., Cheng, L., Cole, P. L., Collins, P., Coltharp, P., Cords, D., Corvisiero, P., Crabb, D., Crannell, H., Crede, V., Cummings, J. P., Dale, D., Dashyan, N., De Masi, R., De Vita, R., De Sanctis, E., Degtyarenko, P. V., Denizli, H., Dennis, L., Deur, A., Dhamija, S., Dharmawardane, K. V., Dhuga, K. S., Dickson, R., Didelez, J. -P., Djalali, C., Dodge, G. E., Doughty, D., Dugger, M., Dytman, S., Dzyubak, O. P., Egiyan, H., Egiyan, K. S., El Fassi, L., Elouadrhiri, L., Eugenio, P., Fatemi, R., Fedotov, G., Fersch, R., Feuerbach, R. J., Forest, T. A., Fradi, A., Gavalian, G., Gevorgyan, N., Gilfoyle, G. P., Giovanetti, K. L., Girod, F. X., Goetz, J. T., Gohn, W., Gordon, C. I. O., Gothe, R. W., Graham, L., Griffioen, K. A., Guillo, M., Guler, N., Guo, L., Gyurjyan, V., Hadjidakis, C., Hafidi, K., Hakobyan, H., Hanretty, C., Hardie, J., Hassall, N., Heddle, D., Hersman, F. W., Hicks, K., Hleiqawi, I., Holtrop, M., Hourany, E., Hyde-Wright, C. E., Ilieva, Y., Ireland, D. G., Ishkhanov, B. S., Isupov, E. L., Ito, M. M., Jenkins, D., Jo, H. S., Johnstone, J. R., Joo, K., Juengst, H. G., Kalantarians, N., Keller, D., Kellie, J. D., Khandaker, M., Khetarpal, P., Kim, W., Klein, A., Klein, F. J., Klimenko, A. V., Kossov, M., Kramer, L. H., Kubarovsky, V., Kuhn, J., Kuhn, S. E., Kuleshov, S. V., Kuznetsov, V., Lachniet, J., Langheinrich, J., Lawrence, D., Li, Ji, Livingston, K., Lu, H. Y., MacCormick, M., Marchand, C., Markov, N., Mattione, P., McAleer, S., McCracken, M., McKinnon, B., McNabb, J. W. C., Mecking, B. A., Mehrabyan, S., Melone, J. J., Mestayer, M. D., Meyer, C. A., Mibe, T., Mikhailov, K., Minehart, R., Mirazita, M., Miskimen, R., Mokeev, V., Morand, L., Moreno, B., Moriya, K., Moteabbed, M., Mueller, J., Munevar, E., Mutchler, G. S., Nadel-Turonski, P., Nasseripour, R., Niccolai, S., Niculescu, G., Niculescu, I., Niczyporuk, B. B., Niroula, M. R., Niyazov, R. A., Nozar, M., O’Rielly, G. V., Osipenko, M., Ostrovidov, A. I., Park, K., Park, S., Pasyuk, E., Paterson, C., Anefalos Pereira, S., Philips, S. A., Pierce, J., Pivnyuk, N., Pocanic, D., Pogorelko, O., Polli, E., Popa, I., Pozdniakov, S., Preedom, B. M., Price, J. W., Procureur, S., Prok, Y., Protopopescu, D., Qin, L. M., Raue, B. A., Riccardi, G., Ricco, G., Ripani, M., Ritchie, B. G., Rosner, G., Rossi, P., Rubin, P. D., Sabatié, F., Saini, M. S., Salamanca, J., Salgado, C., Santoro, J. P., Sapunenko, V., Schott, D., Schumacher, R. A., Serov, V. S., Sharabian, Y. G., Sharov, D., Shvedunov, N. V., Skabelin, A. V., Smith, L. C., Sober, D. I., Sokhan, D., Stavinsky, A., Stepanyan, S. S., Stepanyan, S., Stokes, B. E., Stoler, P., Strakovsky, I. I., Strauch, S., Taiuti, M., Tedeschi, D. J., Tkabladze, A., Tkachenko, S., Todor, L., Tur, C., Ungaro, M., Vineyard, M. F., Vlassov, A. V., Watts, D. P., Weinstein, L. B., Weygand, D. P., Williams, M., Wolin, E., Wood, M. H., Yegneswaran, A., Yurov, M., Zana, L., Zhang, J., Zhao, B., Zhao, Z. W., and The CLAS Collaboration
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- 2009
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169. Observation of Beam Spin Asymmetries in the Process $e p \rightarrow e ��^{+}��^{-}X$ with CLAS12
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Hayward, T. B., Dilks, C., Vossen, A., Avakian, H., Adhikari, S., Angelini, G., Arratia, M., Atac, H., Gayoso, C. Ayerbe, Baltzell, N. A., Barion, L., Battaglieri, M., Bedlinskiy, I., Benmokhtar, F., Bianconi, A., Biselli, A. S., Bond��, M., Boss��, F., Boiarinov, S., Briscoe, W. J., Brooks, W. K., Bulumulla, D., Burkert, V. D., Carman, D. S., Carvajal, J. C., Celentano, A., Chatagnon, P., Chetry, T., Ciullo, G., Clary, B. A., Cole, P. L., Contalbrigo, M., Costantini, G., Crede, V., D'Angelo, A., Dashyan, N., De Vita, R., Defurne, M., Deur, A., Diehl, S., Djalali, C., Dupre, R., Dugger, M., Egiyan, H., Ehrhart, M., Alaoui, A. El, Fassi, L. El, Elouadrhiri, L., Fegan, S., Filippi, A., Forest, T. A., Gavalian, G., Gilfoyle, G. P., Girod, F. X., Glazier, D. I., Golubenko, A. A., Gothe, R. W., Gotra, Y., Griffioen, K. A., Guidal, M., Hafidi, K., Hakobyan, H., Hattawy, M., Hauenstein, F., Hicks, K., Hobart, A., Holtrop, M., Ireland, D. G., Isupov, E. L., Jo, H. S., Joo, K., Joosten, S., Keller, D., Khachatryan, M., Khanal, A., Kim, A., Kim, W., Kripko, A., Kubarovsky, V., Kuhn, S. E., Lanza, L., Leali, M., Lee, S., Lenisa, P., Livingston, K., MacGregor, I. J. D., Marchand, D., Markov, N., Marsicano, L., Mascagna, V., McKinnon, B., Meziani, Z. E., Mirazita, M., Mokeev, V., Movsisyan, A, Camacho, C. Munoz, Nadel-Turonski, P., Naidoo, P., Nanda, S., Neupane, K., Niccolai, S., Niculescu, G., O'Connell, T. R., Osipenko, M., Paolone, M., Pappalardo, L. L., Paremuzyan, R., Pasyuk, E., Phelps, W., Pogorelko, O., Prok, Y., Raue, B. A., Ripani, M., Ritman, J., Rizzo, A., Rossi, P., Rowley, J., Sabati��, F., Salgado, C., Schmidt, A., Segarra, E. P., Sharabian, Y. G., Shrestha, U., Sokhan, D., Soto, O., Sparveris, N., Stepanyan, S., Strakovsky, I. I., Strauch, S., Thornton, A., Tyler, N., Tyson, R., Ungaro, M., Venturelli, L., Voskanyan, H., Voutier, E., Watts, D. P., Wei, K., Wei, X., Wood, M. H., Yale, B., Zachariou, N., and Zhang, J.
- Subjects
High Energy Physics - Experiment (hep-ex) ,Nuclear Theory ,Physics::Accelerator Physics ,FOS: Physical sciences ,High Energy Physics::Experiment ,Nuclear Experiment - Abstract
The observation of beam spin asymmetries in two-pion production in semi-inclusive deep inelastic scattering off an unpolarized proton target is reported. The data presented here were taken in the fall of 2018 with the CLAS12 spectrometer using a 10.6 GeV longitudinally spin-polarized electron beam delivered by CEBAF at JLab. The measured asymmetries provide the first opportunity to extract the parton distribution function $e(x)$, which provides information about the interaction between gluons and quarks, in a collinear framework that offers cleaner access than previous measurements. The asymmetries also constitute the first ever signal sensitive to the helicity-dependent two-pion fragmentation function $G_1^\perp$. A clear sign change is observed around the $��$ mass that appears in model calculations and is indicative of the dependence of the produced pions on the helicity of the fragmenting quark., 6 pages, 5 figures
- Published
- 2021
- Full Text
- View/download PDF
170. Photoproduction of the $f_2(1270)$ meson using the CLAS detector
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Carver, M., Celentano, A., Hicks, K., Marsicano, L., Mathieu, V., Pilloni, A., Adhikari, K. P., Adhikari, S., Amaryan, M. J., Angelini, G., Atac, H., Baltzell, N. A., Barion, L., Battaglieri, M., Bedlinskiy, I., Benmokhtar, F., Bianconi, A., Biselli, A. S., Bondi, M., Bossu, F., Boiarinov, S., Briscoe, W. J., Brooks, W. K., Bulumulla, D., Burkert, V. D., Carman, D. S., Carvajal, J. C., Chatagnon, P., Chetry, T., Ciullo, G., Clark, L., Clary, B. A., Cole, P. L., Contalbrigo, M., Crede, V., D'Angelo, A., Dashyan, N., De Vita, R., Defurne, M., Deur, A., Diehl, S., Djalali, C., Dugger, M., Dupre, R., Egiyan, H., Ehrhart, M., Alaoui, A. E., Fassi, L. E., Eugenio, P., Fedotov, G., Fegan, S., Filippi, A., Gavalian, G., Gevorgyan, N., Gilfoyle, G. P., Girod, F. X., Gothe, R. W., Griffioen, K. A., Hafidi, K., Hakobyan, H., Hattawy, M., Hayward, T. B., Heddle, D., Holtrop, M., Huang, Q., Hyde, C. E., Ilieva, Y., Ireland, D. G., Isupov, E. L., Jenkins, D., H. S., Jo, Joo, K., Joosten, S., Keller, D., Khanal, A., Khandaker, M., Kim, A., Kim, C. W., Klein, F. J., Kripko, A., Kubarovsky, V., Lanza, L., Leali, M., Lenisa, P., Livingston, K., Macgregor, I. J. D., Marchand, D., Mascagna, V., Mccracken, M. E., Mckinnon, B., Meziani, Z. E., Mokeev, V., Movsisyan, A., Munevar, E., Camacho, C. M., Nadel-Turonski, P., Neupane, K., Niccolai, S., Niculescu, G., Osipenko, M., Ostrovidov, A. I., Paolone, M., Pappalardo, L. L., Paremuzyan, R., Pasyuk, E., Phelps, W., Pogorelko, O., Prok, Y., Protopopescu, D., Ripani, M., Ritchie, B. G., Ritman, J., Rizzo, A., Rosner, G., Rowley, J., Sabatie, F., Salgado, C., Schmidt, A., Schumacher, R. A., Sharabian, Y. G., Shrestha, U., Sokhan, D., Soto, O., Sparveris, N., Stepanyan, S., Strakovsky, I. I., Strauch, S., Tyler, N., Tyson, R., Ungaro, M., Venturelli, L., Voskanyan, H., Voutier, E., Watts, D. P., Wei, K., Wei, X., Yale, B., Zachariou, N., Zhang, J., Zhao, Z. W., Institut de Recherches sur les lois Fondamentales de l'Univers (IRFU), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay, Laboratoire de Physique des 2 Infinis Irène Joliot-Curie (IJCLab), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Paris-Saclay-Centre National de la Recherche Scientifique (CNRS), and CLAS
- Subjects
Quark Structure ,Standard Model ,Glueball ,mesons ,pions ,High Energy Physics::Lattice ,Nuclear Theory ,FOS: Physical sciences ,Socio-culturale ,f2(1270): photoproduction ,quark antiquark ,quantum number ,[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex] ,nucl-ex ,beam: energy ,+pi%2B+pi%22">rho(770) --> pi+ pi ,High Energy Physics - Experiment ,High Energy Physics - Experiment (hep-ex) ,Economica ,PE2_2 ,background: low ,PE2_1 ,CLAS ,[PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex] ,ddc:530 ,Nuclear Physics - Experiment ,Nuclear Experiment (nucl-ex) ,Nuclear Experiment ,PE2_3 ,M005M ,+pi0+pi0+p%22">photon rho(770) --> pi0 pi0 p ,hep-ex ,Physics ,Settore FIS/04 ,High Energy Physics::Phenomenology ,M005W ,Ambientale ,suppression ,differential cross section ,Elementary Particles and Fields ,High Energy Physics::Experiment ,Particle Physics - Experiment ,Jefferson Lab - Abstract
The quark structure of the $f_2(1270)$ meson has, for many years, been assumed to be a pure quark-antiquark ($q\bar{q}$) resonance with quantum numbers $J^{PC} = 2^{++}$. Recently, it was proposed that the $f_2(1270)$ is a molecular state made from the attractive interaction of two $\rho$-mesons. Such a state would be expected to decay strongly to final states with charged pions, due to the dominant decay $\rho \to \pi^+ \pi^-$, whereas decay to two neutral pions would likely be suppressed. Here, we measure for the first time the reaction $\gamma p \to \pi^0 \pi^0 p$, using the CLAS detector at Jefferson Lab for incident beam energies between 3.6-5.4~GeV. Differential cross sections, $d\sigma / dt$, for $f_2(1270)$ photoproduction are extracted with good precision, due to low backgrounds, and are compared with theoretical calculations., Comment: 5 pages, 4 figures
- Published
- 2021
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- View/download PDF
171. Improved $��p$ Elastic Scattering Cross Sections Between 0.9 and 2.0 GeV/c and Connections to the Neutron Star Equation of State
- Author
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CLAS Collaboration, Rowley, J., Compton, N., Djalali, C., Hicks, K., Price, J., Zachariou, N., Adhikari, K. P., Armstrong, W. R., Atac, H., Baashen, L., Barion, L., Bashkanov, M., Battaglieri, M., Bedlinskiy, I., Benmokhtar, F., Bianconi, A., Biondo, L., Biselli, A. S., Bondi, M., Bossu, F., Boiarinov, S., Briscoe, W. J., Brooks, W. K., Bulumulla, D., Burkert, V. D., Carman, D. S., Carvajal, J. C., Celentano, A., Chatagnon, P., Chesnokov, V., Chetry, T., Ciullo, G., Clark, L., Cole, P. L., Contalbrigo, M., Costantini, G., Crede, V., D'Angelo, A., Dashyan, N., De Vita, R., Defurne, M., Deur, A., Diehl, S., Dupre, R., Egiyan, H., Ehrhart, M., Alaoui, A. El, Fassi, L. El, Eugenio, P., Fedotov, G., Fegan, S., Fersch, R., Filippi, A., Fradi, A., Gavalian, G., Girod, F. X., Glazier, D. I., Golubenko, A., Gothe, R. W., Griffioen, K., Guo, L., Hafidi, K., Hakobyan, H., Hattawy, M., Hayward, T. B., Heddle, D., Hobart, A., Holtrop, M., Ilieva, Y., Ireland, D. G., Isupov, E. L., Jenkins, D., Jo, H. S., Joo, K., Keller, D., Khanal, A., Khandaker, M., Kim, A., Korover, I., Kripko, A., Kubarovsky, V., Kuhn, S. E., Lanza, L., Leali, M., Lenisa, P., Livingston, K., MacGregor, I. J. D., Marchand, D., Markov, N., Marsicano, L., Mascagna, V., McCracken, M. E., McKinnon, B., McLauchlin, C., Meziani, Z. E., Migliorati, S., Mineeva, T., Mirazita, M., Mokeev, V., Munevar, E., Camacho, C. Munoz, Nadel-Turonski, P., Neupane, K., Niccolai, S., Niculescu, G., O'Connell, T. R., Osipenko, M., Ostrovidov, A. I., Pandey, P., Paolone, M., Pappalardo, L. L., Pasyuk, E., Pogorelko, O., Prok, Y., Reed, T., Ripani, M., Ritman, J., Rizzo, A., Rosner, G., Sabatie, F., Salgado, C., Schmidt, A., Schumacher, R. A., Sharabian, Y. G., Shrestha, U., Sokhan, D., Soto, O., Sparveris, N., Strakovsky, I. I., Strauch, S., Tyson, R., Ungaro, M., Venturelli, L., Voskanyan, H., Vossen, A., Voutier, E., Watts, D., Wei, K., Wei, X., Wishart, R., Wood, M. H., Yale, B., Yurov, M., Zhang, J., and Zhao, Z. W.
- Subjects
High Energy Physics - Experiment (hep-ex) ,Nuclear Theory ,FOS: Physical sciences ,Nuclear Experiment (nucl-ex) ,Nuclear Experiment - Abstract
Strange matter is believed to exist in the cores of neutron stars based on simple kinematics. If this is true, then hyperon-nucleon interactions will play a significant part in the neutron star equation of state (EOS). Yet, compared to other elastic scattering processes, there is very little data on $��$-$N$ scattering. This experiment utilized the CLAS detector to study the $��p \rightarrow ��p$ elastic scattering cross section in the incident $��$ momentum range 0.9-2.0 GeV/c. This is the first data on this reaction in several decades. The new cross sections have significantly better accuracy and precision than the existing world data, and the techniques developed here can also be used in future experiments., 6 pages, 5 figures
- Published
- 2021
- Full Text
- View/download PDF
172. Observation of Beam Spin Asymmetries in the Process $ep\rightarrow{e}^{'}{\pi}^{+}{\pi}^{-}X$ with CLAS12
- Author
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Hayward, T.B., Dilks, C., Vossen, A., Avakian, H., Adhikari, S., Angelini, G., Arratia, M., Atac, H., Ayerbe Gayoso, C., Baltzell, N.A., Barion, L., Battaglieri, M., Bedlinskiy, I., Benmokhtar, F., Bianconi, A., Biselli, A.S., Bondì, M., Bossù, F., Boiarinov, S., Briscoe, W.J., Brooks, W.K., Bulumulla, D., Burkert, V.D., Carman, D.S., Carvajal, J.C., Celentano, A., Chatagnon, P., Chetry, T., Ciullo, G., Clary, B.A., Cole, P.L., Contalbrigo, M., Costantini, G., Crede, V., D'Angelo, A., Dashyan, N., De Vita, R., Defurne, M., Deur, A., Diehl, S., Djalali, C., Dupre, R., Dugger, M., Egiyan, H., Ehrhart, M., El Alaoui, A., El Fassi, L., Elouadrhiri, L., Fegan, S., Filippi, A., Forest, T.A., Gavalian, G., Gilfoyle, G.P., Girod, F.X., Glazier, D.I., Golubenko, A.A., Gothe, R.W., Gotra, Y., Griffioen, K.A., Guidal, M., Hafidi, K., Hakobyan, H., Hattawy, M., Hauenstein, F., Hicks, K., Hobart, A., Holtrop, M., Ireland, D.G., Isupov, E.L., Jo, H.S., Joo, K., Joosten, S., Keller, D., Khachatryan, M., Khanal, A., Kim, A., Kim, W., Kripko, A., Kubarovsky, V., Kuhn, S.E., Lanza, L., Leali, M., Lee, S., Lenisa, P., Livingston, K., Macgregor, I.J.D., Marchand, D., Markov, N., Marsicano, L., Mascagna, V., Mckinnon, B., Meziani, Z.E., Mirazita, M., Mokeev, V., Movsisyan, A., Munoz Camacho, C., Nadel-Turonski, P., Naidoo, P., Nanda, S., Neupane, K., Niccolai, S., Niculescu, G., O'Connell, T.R., Osipenko, M., Paolone, M., Pappalardo, L.L., Paremuzyan, R., Pasyuk, E., Phelps, W., Pogorelko, O., Prok, Y., Raue, B.A., Ripani, M., Ritman, J., Rizzo, A., Rossi, P., Rowley, J., Sabatié, F., Salgado, C., Schmidt, A., Segarra, E.P., Sharabian, Y.G., Shrestha, U., Sokhan, D., Soto, O., Sparveris, N., Stepanyan, S., Strakovsky, I.I., Strauch, S., Thornton, A., Tyler, N., Tyson, R., Ungaro, M., Venturelli, L., Voskanyan, H., Voutier, E., Watts, D.P., Wei, K., Wei, X., Wood, M.H., Yale, B., Zachariou, N., Zhang, J., Institut de Recherches sur les lois Fondamentales de l'Univers (IRFU), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay, Laboratoire de Physique des 2 Infinis Irène Joliot-Curie (IJCLab), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Paris-Saclay-Centre National de la Recherche Scientifique (CNRS), and CLAS
- Subjects
deep inelastic scattering: semi-inclusive reaction ,Nuclear Theory ,collinear ,parton: distribution function ,gluon ,GeV ,Newport News CEBAF Linac ,helicity: asymmetry: measured ,[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex] ,fragmentation function ,quark ,p: target ,CLAS ,two-pion ,Physics::Accelerator Physics ,High Energy Physics::Experiment ,spectrometer ,electron: beam ,Nuclear Experiment ,spin: asymmetry ,Jefferson Lab ,Nuclear Physics - Abstract
International audience; The observation of beam spin asymmetries in two-pion production in semi-inclusive deep inelastic scattering off an unpolarized proton target is reported. The data presented here were taken in the fall of 2018 with the CLAS12 spectrometer using a 10.6 GeV longitudinally spin-polarized electron beam delivered by CEBAF at JLab. The measured asymmetries provide the first opportunity to extract the parton distribution function e(x), which provides information about the interaction between gluons and quarks, in a collinear framework that offers cleaner access than previous measurements. The asymmetries also constitute the first ever signal sensitive to the helicity-dependent two-pion fragmentation function G1⊥. A clear sign change is observed around the ρ mass that appears in model calculations and is indicative of the dependence of the produced pions on the helicity of the fragmenting quark.
- Published
- 2021
- Full Text
- View/download PDF
173. Observation of Beam Spin Asymmetries in the Process ep→e′π+π−X with CLAS12
- Author
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Hayward, T. B., Dilks, C., Vossen, A., Avakian, H., Adhikari, S., Angelini, G., Arratia, M., Atac, H., Ayerbe Gayoso, C., Baltzell, N. A., Barion, L., Battaglieri, M., Bedlinskiy, I., Benmokhtar, F., Bianconi, A., Biselli, A. S., Bondì, M., Bossù, F., Boiarinov, S., Briscoe, W. J., Brooks, W. K., Bulumulla, D., Burkert, V. D., Carman, D. S., Carvajal, J. C., Celentano, A., Chatagnon, P., Chetry, T., Ciullo, G., Clary, B. A., Cole, P. L., Contalbrigo, M., Costantini, G., Crede, V., D’Angelo, A., Dashyan, N., De Vita, R., Defurne, M., Deur, A., Diehl, S., Djalali, C., Dupre, R., Dugger, M., Egiyan, H., Ehrhart, M., El Alaoui, A., El Fassi, L., Elouadrhiri, L., Fegan, S., Filippi, A., Forest, T. A., Gavalian, G., Gilfoyle, G. P., Girod, F. X., Glazier, D. I., Golubenko, A. A., Gothe, R. W., Gotra, Y., Griffioen, K. A., Guidal, M., Hafidi, K., Hakobyan, H., Hattawy, M., Hauenstein, F., Hicks, K., Hobart, A., Holtrop, M., Ireland, D. G., Isupov, E. L., H. S., Jo, Joo, K., Joosten, S., Keller, D., Khachatryan, M., Khanal, A., Kim, A., Kim, W., Kripko, A., Kubarovsky, V., Kuhn, S. E., Lanza, L., Leali, M., Lee, S., Lenisa, P., Livingston, K., Macgregor, I. J. D., Marchand, D., Markov, N., Marsicano, L., Mascagna, V., Mckinnon, B., Meziani, Z. E., Mirazita, M., Mokeev, V., Movsisyan, A., Munoz Camacho, C., Nadel-Turonski, P., Naidoo, P., Nanda, S., Neupane, K., Niccolai, S., Niculescu, G., O’Connell, T. R., Osipenko, M., Paolone, M., Pappalardo, L. L., Paremuzyan, R., Pasyuk, E., Phelps, W., Pogorelko, O., Prok, Y., Raue, B. A., Ripani, M., Ritman, J., Rizzo, A., Rossi, P., Rowley, J., Sabatié, F., Salgado, C., Schmidt, A., Segarra, E. P., Sharabian, Y. G., Shrestha, U., Sokhan, D., Soto, O., Sparveris, N., Stepanyan, S., Strakovsky, I. I., Strauch, S., Thornton, A., Tyler, N., Tyson, R., Ungaro, M., Venturelli, L., Voskanyan, H., Voutier, E., Watts, D. P., Wei, K., Wei, X., Wood, M. H., Yale, B., Zachariou, N., and Zhang, J.
- Abstract
The observation of beam spin asymmetries in two-pion production in semi-inclusive deep inelastic scattering off an unpolarized proton target is reported. The data presented here were taken in the fall of 2018 with the CLAS12 spectrometer using a 10.6 GeV longitudinally spin-polarized electron beam delivered by CEBAF at JLab. The measured asymmetries provide the first opportunity to extract the parton distribution function e(x), which provides information about the interaction between gluons and quarks, in a collinear framework that offers cleaner access than previous measurements. The asymmetries also constitute the first ever signal sensitive to the helicity-dependent two-pion fragmentation function G1⊥. A clear sign change is observed around the ρ mass that appears in model calculations and is indicative of the dependence of the produced pions on the helicity of the fragmenting quark.
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- 2021
174. Resonant contributions to inclusive nucleon structure functions from exclusive meson electroproduction data
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Hiller Blin, A. N., primary, Melnitchouk, W., additional, Mokeev, V. I., additional, Burkert, V. D., additional, Chesnokov, V. V., additional, Pilloni, A., additional, and Szczepaniak, A. P., additional
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- 2021
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175. Isobar channels and nucleon resonances in π + π − electroproduction on protons
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Fedotov, G. V., Burkert, V. D., Golovach, E. N., Elouadrhiri, L., Isupov, E. L., Ishkhanov, B. S., Mokeev, V. I., and Shvedunov, N. V.
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- 2008
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176. Double polarisation observable G for single pion photoproduction from the proton
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Zachariou, N., primary, Watts, D.P., additional, McAndrew, J., additional, Zana, L., additional, Bashkanov, M., additional, Strakovsky, I.I., additional, Workman, R., additional, Sarantsev, A.V., additional, Nikonov, V., additional, Adhikari, K.P., additional, Adhikari, S., additional, Amaryan, M.J., additional, Angelini, G., additional, Armstrong, W.R., additional, Atac, H., additional, Baltzell, N.A., additional, Barion, L., additional, Battaglieri, M., additional, Bedlinskiy, I., additional, Benmokhtar, F., additional, Bianconi, A., additional, Biselli, A.S., additional, Bondi, M., additional, Bossù, F., additional, Boiarinov, S., additional, Briscoe, W.J., additional, Brooks, W.K., additional, Bulumulla, D., additional, Carman, D.S., additional, Carvajal, J.C., additional, Celentano, A., additional, Chatagnon, P., additional, Chetry, T., additional, Ciullo, G., additional, Clary, B.A., additional, Cole, P.L., additional, Contalbrigo, M., additional, Crede, V., additional, D'Angelo, A., additional, Dashyan, N., additional, De Vita, R., additional, Defurne, M., additional, Deur, A., additional, Diehl, S., additional, Djalali, C., additional, Dugger, M., additional, Dupre, R., additional, Egiyan, H., additional, Ehrhart, M., additional, El Alaoui, A., additional, El Fassi, L., additional, Elouadrhiri, L., additional, Eugenio, P., additional, Fedotov, G., additional, Fegan, S., additional, Filippi, A., additional, Gavalian, G., additional, Gilfoyle, G.P., additional, Girod, F.X., additional, Glazier, D.I., additional, Gothe, R.W., additional, Griffioen, K.A., additional, Guo, L., additional, Hafidi, K., additional, Hakobyan, H., additional, Hattawy, M., additional, Heddle, D., additional, Hicks, K., additional, Hobart, A., additional, Holtrop, M., additional, Huang, Q., additional, Ilieva, Y., additional, Ireland, D.G., additional, Isupov, E.L., additional, Jenkins, D., additional, Jo, H.S., additional, Joo, K., additional, Joosten, S., additional, Keller, D., additional, Khanal, A., additional, Khandaker, M., additional, Kim, A., additional, Klein, F.J., additional, Kripko, A., additional, Kubarovsky, V., additional, Lanza, L., additional, Leali, M., additional, Lenisa, P., additional, Livingston, K., additional, MacGregor, I.J.D., additional, Marchand, D., additional, Marsicano, L., additional, Mascagna, V., additional, McKinnon, B., additional, Meziani, Z.E., additional, Mineeva, T., additional, Mokeev, V., additional, Movsisyan, A., additional, Munevar, E., additional, Munoz Camacho, C., additional, Nadel-Turonski, P., additional, Neupane, K., additional, Ni, A., additional, Niccolai, S., additional, Niculescu, G., additional, O'Connell, T.R., additional, Osipenko, M., additional, Ostrovidov, A.I., additional, Paolone, M., additional, Pappalardo, L.L., additional, Paremuzyan, R., additional, Pasyuk, E., additional, Pogorelko, O., additional, Prok, Y., additional, Protopopescu, D., additional, Ripani, M., additional, Ritchie, B.G., additional, Ritman, J., additional, Rizzo, A., additional, Rosner, G., additional, Rowley, J., additional, Sabatié, F., additional, Salgado, C., additional, Schmidt, A., additional, Schumacher, R.A., additional, Sharabian, Y.G., additional, Shrestha, U., additional, Sokhan, D., additional, Soto, O., additional, Sparveris, N., additional, Stepanyan, S., additional, Strauch, S., additional, Tyler, N., additional, Ungaro, M., additional, Venturelli, L., additional, Voskanyan, H., additional, Voutier, E., additional, Wei, X., additional, Yale, B., additional, Zhang, J., additional, and Zhao, Z.W., additional
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- 2021
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177. On the efficiency of calculations of free vibrations of vibroacoustic systems by the finite element method
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Mokeev, V. V.
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- 2007
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178. Isobar channels in the production of π+π− pairs on a proton by virtual photons
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Burkert, V. D., Mokeev, V. I., Shvedunov, N. V., Boluchevskii, A. A., Battaglieri, M., Golovach, E. N., Elouardrhiri, L., Joo, K., Isupov, E. L., Ishkhanov, B. S., Markov, N. S., Ripani, M., Ricco, J., Sapunenko, V. V., Taiuti, M., and Fedotov, G. V.
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- 2007
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179. Investigation of the low-lying nucleon resonances in reactions of π+π− pair electroproduction on protons
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Fedotov, G. V., Burkert, V., Elouadrhiri, L., Isupov, E. L., Ishkhanov, B. S., Mokeev, V. I., Shvedunov, N. V., and the CLAS Collaboration
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- 2007
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180. Photoproduction of eta mesons off the proton for 1.2<Eγ<4.7 GeV using CLAS at Jefferson Laboratory
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Hu, T, Akbar, Z, Crede, V, Adhikari, Kp, Adhikari, S, Amaryan, Mj, Angelini, G, Asryan, G, Atac, H, Ayerbe Gayoso, C, Barion, L, Battaglieri, M, Bedlinskiy, I, Benmokhtar, F, Bianconi, A, Biselli, As, Bossu, F, Boiarinov, S, Briscoe, Wj, Brooks, Wk, Carman, Ds, Carvajal, J, Celentano, A, Chatagnon, P, Chetry, T, Ciullo, G, Clark, L, Clary, Ba, Cole, Pl, Contalbrigo, M, Cruz-Torres, R, D'Angelo, A, Dashyan, N, De Vita, R, Defurne, M, Deur, A, Diehl, S, Djalali, C, Dugger, M, Dupre, R, Egiyan, H, Ehrhart, M, El Alaoui, A, El Fassi, L, Eugenio, P, Fedotov, G, Fersch, R, Filippi, A, Gavalian, G, Gilfoyle, Gp, Girod, Fx, Glazier, Di, Golovatch, E, Gothe, Rw, Griffioen, Ka, Guidal, M, Guo, L, Hafidi, K, Hakobyan, H, Hanretty, C, Harrison, N, Hattawy, M, Hayward, Tb, Heddle, D, Hicks, K, Hobart, A, Holtrop, M, Ilieva, Y, Illari, I, Ireland, Dg, Ishkhanov, Bs, Isupov, El, Jenkins, D, H. S., J, Joo, K, Joosten, S, Keller, D, Khachatryan, M, Khanal, A, Khandaker, M, Kim, A, Kim, Cw, Kim, W, Klein, Fj, Kubarovsky, V, Lanza, L, Leali, M, Lenisa, P, Livingston, K, Macgregor, Ijd, Marchand, D, Markov, N, Mascagna, V, Mccracken, Me, Mckinnon, B, Meyer, Ca, Meziani, Ze, Mineeva, T, Mokeev, V, Movsisyan, A, Munevar, E, Munoz Camacho, C, Nadel-Turonski, P, Niccolai, S, Niculescu, G, O'Connell, T, Osipenko, M, Ostrovidov, Ai, Paolone, M, Pappalardo, Ll, Paremuzyan, R, Pasyuk, E, Phelps, W, Pogorelko, O, Poudel, J, Price, Jw, Prok, Y, Protopopescu, D, Raue, Ba, Ripani, M, Ritman, J, Rizzo, A, Rosner, G, Rowley, J, Sabatie, F, Salgado, C, Schmidt, A, Schumacher, Ra, Sharabian, Yg, Shrestha, U, Skorodumina, I, Sokhan, D, Soto, O, Sparveris, N, Stepanyan, S, Stoler, P, Strakovsky, Ii, Strauch, S, Tan, Ja, Tyler, N, Ungaro, M, Venturelli, L, Voskanyan, H, Voutier, E, Watts, Dp, Wei, K, Wei, X, Wood, Mh, Zachariou, N, Zhang, J, and Zhao, Zw
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Settore FIS/04 - Published
- 2020
181. Beam–target helicity asymmetry E in K+Σ− photoproduction on the neutron
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Egiyan, H, Ehrhart, M, El Alaoui, A, Eugenio, P, Fersch, R., Filippi, A., Gavalian, G., Gevorgyan, N., Ghandilyan, Y., Gilfoyle, G.P., Girod, F.X., Gohn, W., Golovatch, E., Gothe, R.W., Griffoen, K.A., Guidal, M., Hafidi, K., Hakobyan, H., Hattawy, M., Heddle, D., Hicks, K., Ho, D., Holtrop, M., Ilieva, Y., Ireland, D.G., Ishkanov, B.S., Isupov, E.L., Jenkins, D., Jo, H.S., Joo, K., Joosten, S.J., Keller, D., Khachatryan, M., Khanal, A., Khandaker, M., Kim, C.W., Kim, W., Kubarovsky, V., Lanza, L., Leali, M., Lenisa, P., Livingston, K., MacGregor, I.J.D., Marchand, D., Markov, N., Marsicano, L., Mascagna, V., Mayer, M., McKinnon, B., Meziani, Z.E., Mineeva, T., Mokeev, V., Munevar, E., Munoz Camacho, C., Nadal Turonski, P., O'Connell, T.R., Osipenko, M., Ostrovidov, A.I., Paolone, M., Pappalardo, L.L., Park, K., Pasyuk, E., Peng, P., Phelps, W., Pogorelko, O., Poudel, J., Price, J.W., Prok, Y., Puckett, A.J.R., Raue, B.R., Ripani, M., Rizzo, A., Rosner, G., Salgado, C., Schmidt, A., Schumacher, R.A., Shrestha, U., Sokhan, D., Soto, O., Sparveris, N., Strakovsky, I.I., Strauch, S., Tan, J.A., Tyler, N., Ungaro, M., Venturelli, L., Voskanyan, H., Voutier, E., Walford, N.K., Whisnant, C.S., Wood, M.H., Zhang, J., and Zhao, Z.W.
- Subjects
Nuclear Experiment - Abstract
We report a measurement of a beam–target double-polarisation observable (E) for the γ→n→(p)→K+Σ−(p) reaction. The data were obtained impinging the circularly-polarised energy-tagged photon beam of Hall B at Jefferson Lab on a longitudinally-polarised frozen-spin hydrogen deuteride (HD) nuclear target. The E observable for an effective neutron target was determined for centre-of-mass energies 1.70≤W≤2.30 GeV, with reaction products detected over a wide angular acceptance by the CLAS spectrometer. These new double-polarisation data give unique constraints on the strange decays of excited neutron states. Inclusion of the new data within the Bonn-Gatchina theoretical model results in significant changes for the extracted photocouplings of a number of established nucleon resonances. Possible improvements in the PWA description of the experimental data with additional “missing” resonance states, including the N(2120)3/2− resonance, are also quantified.
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- 2020
182. First measurement of direct photoproduction of the a2(1320)0 meson on the proton
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Celentano, A., Battaglieri, M., De Vita, R., Marsicano, L., Mathieu, V., Pilloni, A., Szczepaniak, A., Adhikari, K. P., Adhikari, S., Amaryan, M. J., Angelini, G., Atac, H., Barion, L., Bedlinskiy, I., Benmokhtar, Fatiha, Bianconi, A., Biselli, A. S., Bossù, F., Boiarinov, S., Briscoe, W. J., Brooks, W. K., Bulumulla, D., Burkert, V. D., Carman, D. S., Carvajal, J. C., Chatagnon, P., Chetry, T., Ciullo, G., Clark, L., Cole, P. L., Contalbrigo, M., Cortes, O., Crede, V., Cruz-Torres, R., D'Angelo, A., Dashyan, N., Defurne, M., Deur, A., Diehl, S., Djalali, C., Dugger, M., Dupre, R., Egiyan, H., Ehrhart, M., El Alaoui, A., El Fassi, L., Elouadrhiri, L., Eugenio, P., Fedotov, G., Fersch, R., Filippi, A., Gavalian, G., Gevorgyan, N., Girod, F. X., Glazier, D. I., Gohn, W., Golovatch, E., Gothe, R. W., Griffioen, K. A., Guidal, M., Hafidi, K., Hakobyan, H., Harrison, N., Hattawy, M., Hauenstein, F., Hayward, T. B., Heddle, D., Hicks, K., Hobart, A., Holtrop, M., Ilieva, Y., Ireland, D. G., Ishkhanov, B. S., Isupov, E. L., Jenkins, D., Jo, H. S., Joo, K., Joosten, S., Keller, D., Khachatryan, M., Khanal, A., Khandaker, M., Kim, A., Kim, C. W., Kim, W., Klein, F. J., Kubarovsky, V., Lanza, L., Leali, M., Lenisa, P., Livingston, K., Lucherini, V., MacGregor, I. J. D., Marchand, D., Markov, N., Mascagna, V., McCracken, M. E., McKinnon, B., Meziani, Z.-E., Mirazita, M., Mokeev, V., Movsisyan, A., Munevar, E., Munoz Camacho, C., Nadel-Turonski, P., Neupane, K., Niccolai, S., Niculescu, G., Osipenko, M., Ostrovidov, A. I., Paolone, M., Pappalardo, L. L., Paremuzyan, R., Pasyuk, E., Phelps, W., Pogorelko, O., Price, J. W., Prok, Y., Ripani, M., Ritman, J., Rizzo, A., Rosner, G., Rowley, J., Sabatié, F., Salgado, C., Schmidt, A., Schumacher, R. A., Shrestha, U., Sokan, D., Soto, O., Sparveris, N., Stepanyan, S., Strakovsky, I. I., Strauch, S., Tan, J. A., Tyler, N., Ungaro, M., Venturelli, L., Voskanyan, H., Voutier, E., Watts, D., Wei, X., Wood, M. H., Zachariou, N., Zhang, J., Zhao, Z. W., Institut de Recherches sur les lois Fondamentales de l'Univers (IRFU), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay, Laboratoire de Physique des 2 Infinis Irène Joliot-Curie (IJCLab), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Paris-Saclay-Centre National de la Recherche Scientifique (CNRS), and CLAS
- Subjects
Nuclear Theory ,[PHYS.NUCL]Physics [physics]/Nuclear Theory [nucl-th] ,Hadronic Physics and QCD ,Socio-culturale ,FOS: Physical sciences ,Regge ,[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex] ,beam: energy ,High Energy Physics - Experiment ,Nuclear Theory (nucl-th) ,differential cross section: measured ,High Energy Physics - Experiment (hep-ex) ,PE2_2 ,PE2_1 ,CLAS ,mass spectrum: (pi0 eta) ,[PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex] ,angular distribution ,photon p: exclusive reaction ,Nuclear Experiment (nucl-ex) ,Nuclear Experiment ,PE2_3 ,Nucleons ,Mesons ,Settore FIS/04 ,photon p: inelastic scattering ,partial wave analysis ,photon: energy ,Photoproduction ,meson: photoproduction ,experimental results - Abstract
We present the first measurement of the exclusive reaction $\gamma p \rightarrow a_2(1320)^0 \, p$ in the photon energy range $3.5$-$5.5$ GeV and four-momentum transfer squared $0.2, Comment: Version accepted for publication in PRC, "Rapid Communications" section
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- 2020
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183. Deeply virtual and exclusive electroproduction of ω-mesons
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Morand, L., Doré, D., Garçon, M., Guidal, M., Laget, J. -M., Morrow, S., Sabatié, F., Smith, E., Adams, G., Ambrozewicz, P., Anghinolfi, M., Asryan, G., Audit, G., Avakian, H., Bagdasaryan, H., Ball, J., Ball, J. P., Baltzell, N. A., Barrow, S., Batourine, V., Battaglieri, M., Bektasoglu, M., Bellis, M., Benmouna, N., Berman, B. L., Biselli, A. S., Boiarinov, S., Bonner, B. E., Bouchigny, S., Bradford, R., Branford, D., Briscoe, W. J., Brooks, W. K., Bültmann, S., Burkert, V. D., Butuceanu, C., Calarco, J. R., Careccia, S. L., Carman, D. S., Cazes, A., Chen, S., Cole, P. L., Cords, D., Corvisiero, P., Crabb, D., Cummings, J. P., De Sanctis, E., DeVita, R., Degtyarenko, P. V., Denizli, H., Dennis, L., Deur, A., Dharmawardane, K. V., Dhuga, K. S., Djalali, C., Dodge, G. E., Donnelly, J., Doughty, D., Dugger, M., Dytman, S., Dzyubak, O. P., Egiyan, H., Egiyan, K. S., Elouadrhiri, L., Eugenio, P., Fatemi, R., Feldman, G., Fersch, R. G., Feuerbach, R. J., Funsten, H., Gavalian, G., Gilfoyle, G. P., Giovanetti, K. L., Girod, F. -X., Goetz, J. T., Gordon, C. I. O., Gothe, R. W., Griffioen, K. A., Guillo, M., Guler, N., Guo, L., Gyurjyan, V., Hadjidakis, C., Hakobyan, R. S., Hardie, J., Heddle, D., Hersman, F. W., Hicks, K., Hleiqawi, I., Holtrop, M., Hyde-Wright, C. E., Ilieva, Y., Ireland, D. G., Ito, M. M., Jenkins, D., Jo, H. -S., Joo, K., Juengst, H. G., Kellie, J. D., Khandaker, M., Kim, W., Klein, A., Klein, F. J., Klimenko, A. V., Kossov, M., Kubarovski, V., Kramer, L. H., Kuhn, S. E., Kuhn, J., Lachniet, J., Langheinrich, J., Lawrence, D., Lee, T., Li, Ji, Livingston, K., Marchand, C., Maximon, L. C., McAleer, S., McKinnon, B., McNabb, J. W. C., Mecking, B. A., Mehrabyan, S., Melone, J. J., Mestayer, M. D., Meyer, C. A., Mikhailov, K., Minehart, R., Mirazita, M., Miskimen, R., Mokeev, V., Mueller, J., Mutchler, G. S., Napolitano, J., Nasseripour, R., Niccolai, S., Niculescu, G., Niculescu, I., Niczyporuk, B. B., Niyazov, R. A., Nozar, M., O’Rielly, G. V., Osipenko, M., Ostrovidov, A. I., Park, K., Pasyuk, E., Philips, S. A., Pivnyuk, N., Pocanic, D., Pogorelko, O., Polli, E., Popa, I., Pozdniakov, S., Preedom, B. M., Price, J. W., Prok, Y., Protopopescu, D., Raue, B. A., Riccardi, G., Ricco, G., Ripani, M., Ritchie, B. G., Ronchetti, F., Rosner, G., Rossi, P., Rubin, P. D., Salgado, C., Santoro, J. P., Sapunenko, V., Schumacher, R. A., Serov, V. S., Sharabian, Y. G., Shaw, J., Skabelin, A. V., Smith, L. C., Sober, D. I., Stavinsky, A., Stepanyan, S., Stepanyan, S. S., Stokes, B. E., Stoler, P., Strakovsky, I. I., Strauch, S., Taiuti, M., Tedeschi, D. J., Thoma, U., Tkabladze, A., Todor, L., Tur, C., Ungaro, M., Vineyard, M. F., Vlassov, A. V., Weinstein, L. B., Weygand, D. P., Williams, M., Wolin, E., Wood, M. H., Yegneswaran, A., Zana, L., and The CLAS Collaboration
- Published
- 2005
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184. Structure Functions for the Exclusive π+ n and π0 p Channels of Electroproduction from Data Measured with the CLAS Detector
- Author
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Bulgakov, A. D., primary, Golubenko, A. A., additional, Davydov, M. M., additional, Isupov, E. L., additional, Ishkhanov, B. S., additional, Mokeev, V. I., additional, Nasrtdinov, A. G., additional, and Chesnokov, V. V., additional
- Published
- 2021
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- View/download PDF
185. Measurement of the proton spin structure at long distances
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Zheng, X., primary, Deur, A., additional, Kang, H., additional, Kuhn, S. E., additional, Ripani, M., additional, Zhang, J., additional, Adhikari, K. P., additional, Adhikari, S., additional, Amaryan, M. J., additional, Atac, H., additional, Avakian, H., additional, Barion, L., additional, Battaglieri, M., additional, Bedlinskiy, I., additional, Benmokhtar, F., additional, Bianconi, A., additional, Biselli, A. S., additional, Boiarinov, S., additional, Bondì, M., additional, Bossù, F., additional, Bosted, P., additional, Briscoe, W. J., additional, Brock, J., additional, Brooks, W. K., additional, Bulumulla, D., additional, Burkert, V. D., additional, Carlin, C., additional, Carman, D. S., additional, Carvajal, J. C., additional, Celentano, A., additional, Chatagnon, P., additional, Chetry, T., additional, Chen, J.-P., additional, Choi, S., additional, Ciullo, G., additional, Clark, L., additional, Cole, P. L., additional, Contalbrigo, M., additional, Crede, V., additional, D’Angelo, A., additional, Dashyan, N., additional, De Vita, R., additional, Defurne, M., additional, Diehl, S., additional, Djalali, C., additional, Drozdov, V. A., additional, Dupre, R., additional, Ehrhart, M., additional, El Alaoui, A., additional, El Fassi, L., additional, Elouadrhiri, L., additional, Eugenio, P., additional, Fedotov, G., additional, Fegan, S., additional, Fersch, R., additional, Filippi, A., additional, Forest, T. A., additional, Ghandilyan, Y., additional, Gilfoyle, G. P., additional, Giovanetti, K. L., additional, Girod, F.-X., additional, Glazier, D. I., additional, Gothe, R. W., additional, Griffioen, K. A., additional, Guidal, M., additional, Guler, N., additional, Guo, L., additional, Hafidi, K., additional, Hakobyan, H., additional, Hattawy, M., additional, Hayward, T. B., additional, Heddle, D., additional, Hicks, K., additional, Hobart, A., additional, Holmstrom, T., additional, Holtrop, M., additional, Ilieva, Y., additional, Ireland, D. G., additional, Isupov, E. L., additional, Jo, H. S., additional, Joo, K., additional, Joosten, S., additional, Keith, C. D., additional, Keller, D., additional, Khanal, A., additional, Khandaker, M., additional, Kim, C. W., additional, Kim, W., additional, Klein, F. J., additional, Kripko, A., additional, Kubarovsky, V., additional, Lanza, L., additional, Leali, M., additional, Lenisa, P., additional, livingston, K., additional, Long, E., additional, MacGregor, I. J. D., additional, Markov, N., additional, Marsicano, L., additional, Mascagna, V., additional, McKinnon, B., additional, Meekins, D. G., additional, Mineeva, T., additional, Mirazita, M., additional, Mokeev, V., additional, Mullen, C., additional, Nadel-Turonski, P., additional, Neupane, K., additional, Niccolai, S., additional, Osipenko, M., additional, Ostrovidov, A. I., additional, Paolone, M., additional, Pappalardo, L., additional, Park, K., additional, Pasyuk, E., additional, Phelps, W., additional, Phillips, S. K., additional, Pogorelko, O., additional, Poudel, J., additional, Prok, Y., additional, Raue, B. A., additional, Ritman, J., additional, Rizzo, A., additional, Rosner, G., additional, Rossi, P., additional, Rowley, J., additional, Sabatié, F., additional, Salgado, C., additional, Schmidt, A., additional, Schumacher, R. A., additional, Seely, M. L., additional, Sharabian, Y. G., additional, Shrestha, U., additional, Širca, S., additional, Slifer, K., additional, Sparveris, N., additional, Stepanyan, S., additional, Strakovsky, I. I., additional, Strauch, S., additional, Sulkosky, V., additional, Tyler, N., additional, Ungaro, M., additional, Venturelli, L., additional, Voskanyan, H., additional, Voutier, E., additional, Watts, D. P., additional, Wei, X., additional, Weinstein, L. B., additional, Wood, M. H., additional, Yale, B., additional, Zachariou, N., additional, and Zhao, Z. W., additional
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- 2021
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186. New possibilities for studying nucleon resonances in the production of π + π − pairs by polarized electrons on an unpolarized proton
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Burkert, V., Boluchevskii, A. A., Mokeev, V. I., Ripani, M., Anghinolfi, M., Battaglieri, B., Golovach, E. N., De Vita, R., Elouadrhiri, L., Ishkhanov, B. S., Osipenko, M. V., Ricco, G., Taiuti, M., Fedotov, G. V., Isupov, E. L., Markov, N. S., and Shvedunov, N. V.
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- 2004
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187. New possibilities for studying nucleon resonances on the basis of an analysis of polarization observables and off-scattering-plane angular distributions in the reaction γ v p → π + π − p
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Burkert, V., Mokeev, V. I., Ripani, M., Anghinolfi, M., Battaglieri, M., Boluchevskii, A. A., Golovach, E. N., De Vita, R., Elouadrhiri, L., Ishkhanov, B. S., Osipenko, M. V., Markov, N. S., Ricco, G., Taiuti, M., and Fedotov, G. V.
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- 2003
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188. Helicity components of the cross section for double charged-pion production by real photons on protons
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Mokeev, V. I., Ripani, M., Anghinolfi, M., Battaglieri, M., De Vita, R., Golovach, E. N., Ishkhanov, B. S., Markov, N. S., Osipenko, M. V., Ricco, G., Sapunenko, V. V., Taiuti, M., and Fedotov, G. V.
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- 2003
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189. Recent results on the nucleon resonance spectrum and structure from the CLAS detector
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Mokeev V. I., Aznauryan I. G., Burkert V. D., and Gothe R. W.
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Physics ,QC1-999 - Abstract
The CLAS detector at Jefferson Lab has provided the dominant part of all available worldwide data on exclusive meson electroproduction off protons in the resonance region. New results on the γυpN* transition amplitudes (electrocouplings) are available from analyses of the CLAS data and will be presented. Their impact on understanding of hadron structure will be discussed emphasizing the credible access to the dressed quark mass function that has been achieved for the first time by a combined analysis of the experimental results on the electromagnetic nucleon elastic and N → N* transition form factors. We will also discuss further convincing evidences for a new baryon state N′ (1720)3/2+ found in a combined analysis of charged double pion photo- and electroproduction cross sections off the protons.
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- 2016
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190. Phenomenological model for describing pion-pair production on a proton by virtual photons in the energy region of nucleon-resonance excitation
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Mokeev, V. I., Ripani, M., Anginolfi, M., Battaglieri, M., Golovach, E. N., Ishkhanov, B. S., Osipenko, M. V., Ricco, G., Sapunenko, V. V., Taiuti, M., and Fedotov, G. V.
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- 2001
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191. Pion-pair production on a proton by photons in the energy region of nucleon-resonance excitation
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Ripani, M., Mokeev, V. I., Battaglieri, M., Ishkhanov, B. S., Golovach, E. N., Osipenko, M. V., Ricco, G., Anghinolfi, M., Sapunenko, V. V., Taiuti, M., and Fedotov, G. V.
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- 2000
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192. Description of initial-and final-state-interaction effects for the reaction γp → π−Δ++ in the region of nucleon-resonance excitation
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Anghinolfi, M., Battaglieri, M., Golovach, E. N., Ishkhanov, B. S., Mokeev, V. I., Osipenko, M. V., Ricco, G., Ripani, M., Sapunenko, V. V., Taiuti, M., and Fedotov, G. V.
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- 2000
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193. Beam–target helicity asymmetry E in K+Σ− photoproduction on the neutron
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Zachariou, N., primary, Watts, D.P., additional, Fleming, J., additional, Sarantsev, A.V., additional, Nikonov, V.A., additional, D'Angelo, A., additional, Bashkanov, M., additional, Hanretty, C., additional, Kageya, T., additional, Klein, F.J., additional, Lowry, M., additional, Lu, H., additional, Sandorfi, A., additional, Wei, X., additional, Zonta, I., additional, Adhikari, K.P., additional, Adhikari, S., additional, Amaryan, M.J., additional, Angelini, G., additional, Asryan, G., additional, Atac, H., additional, Barion, L., additional, Bass, C., additional, Battaglieri, M., additional, Bedlinskiy, I., additional, Benmokhtar, F., additional, Bianconi, A., additional, Biselli, A.S., additional, Bossù, F., additional, Boiarinov, S., additional, Briscoe, W.J., additional, Brooks, W.K., additional, Bulumulla, D., additional, Burkert, V., additional, Carman, D.S., additional, Carvajal, J.C., additional, Celentano, A., additional, Charles, G., additional, Chatagnon, P., additional, Chetry, T., additional, Ciullo, G., additional, Cole, P.L., additional, Contalbrigo, M., additional, Dashyan, N., additional, De Vita, R., additional, Deur, A., additional, Diehl, S., additional, Djalali, C., additional, Dupre, R., additional, Egiyan, H., additional, Ehrhart, M., additional, El Alaoui, A., additional, Eugenio, P., additional, Fegan, S., additional, Fersch, R., additional, Filippi, A., additional, Gavalian, G., additional, Gevorgyan, N., additional, Ghandilyan, Y., additional, Gilfoyle, G.P., additional, Girod, F.X., additional, Gohn, W., additional, Golovatch, E., additional, Gothe, R.W., additional, Griffioen, K.A., additional, Guidal, M., additional, Hafidi, K., additional, Hakobyan, H., additional, Hattawy, M., additional, Heddle, D., additional, Hicks, K., additional, Ho, D., additional, Holtrop, M., additional, Ilieva, Y., additional, Ireland, D.G., additional, Ishkhanov, B.S., additional, Isupov, E.L., additional, Jenkins, D., additional, Jo, H.S., additional, Joo, K., additional, Joosten, S.J., additional, Keller, D., additional, Khachatryan, M., additional, Khanal, A., additional, Khandaker, M., additional, Kim, C.W., additional, Kim, W., additional, Kubarovsky, V., additional, Lanza, L., additional, Leali, M., additional, Lenisa, P., additional, Livingston, K., additional, MacGregor, I.J.D., additional, Marchand, D., additional, Markov, N., additional, Marsicano, L., additional, Mascagna, V., additional, Mayer, M., additional, McKinnon, B., additional, Meziani, Z.E., additional, Mineeva, T., additional, Mokeev, V., additional, Munevar, E., additional, Munoz Camacho, C., additional, Nadel Turonski, P., additional, O'Connell, T.R., additional, Osipenko, M., additional, Ostrovidov, A.I., additional, Paolone, M., additional, Pappalardo, L.L., additional, Park, K., additional, Pasyuk, E., additional, Peng, P., additional, Phelps, W., additional, Pogorelko, O., additional, Poudel, J., additional, Price, J.W., additional, Prok, Y., additional, Puckett, A.J.R., additional, Raue, B.A., additional, Ripani, M., additional, Rizzo, A., additional, Rosner, G., additional, Salgado, C., additional, Schmidt, A., additional, Schumacher, R.A., additional, Shrestha, U., additional, Sokhan, D., additional, Soto, O., additional, Sparveris, N., additional, Strakovsky, I.I., additional, Strauch, S., additional, Tan, J.A., additional, Tyler, N., additional, Ungaro, M., additional, Venturelli, L., additional, Voskanyan, H., additional, Voutier, E., additional, Walford, N.K., additional, Whisnant, C.S., additional, Wood, M.H., additional, Zhang, J., additional, and Zhao, Z.W., additional
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- 2020
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194. Exclusive electroproduction off protons in the resonance region at photon virtualities
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Markov, N, Joo, K, Burkert, Vd, Mokeev, V, Smith, Lc, Ungaro, M, Adhikari, S, Amaryan, Mj, Angelini, G, Atac, H, Avakian, H, Ayerbe Gayoso, C, Baltzell, Na, Barion, L, Battaglieri, M, Bedlinskiy, I, Benmokhtar, F, Biselli, As, Bossù, F, Boiarinov, S, Briscoe, Wj, Brooks, Wk, Carman, Ds, Carvajal, Jc, Celentano, A, Chatagnon, P, Chetry, T, Cole, Pl, Contalbrigo, M, Crede, V, Ciullo, G, D'Angelo, A, Dashyan, N, De Vita, R, De Sanctis, E, Defurne, M, Deur, A, Diehl, S, Djalali, C, Dupre, R, Ehrhart, M, El Alaoui, A, El Fassi, L, Eugenio, Pl, Evans, C, Filippi, A, Ghandilyan, Y, Girod, Fx, Golovatch, E, Gothe, Rw, Griffioen, Ka, Guidal, M, Hafidi, K, Hakobyan, H, Hattawy, M, Hayward, Tb, Hicks, K, Holtrop, M, Ilieva, Y, Ireland, Dg, Ishkhanov, Bs, Isupov, El, Jenkins, D, H. S, J, Keller, D, Khachatryan, M, Khanal, A, Khandaker, M, Kim, A, Kim, Cw, Kim, W, Klein, Fj, Kubarovsky, V, Lanza, L, Leali, M, Livingston, K, Macgregor, Ijd, Marchand, D, Mascagna, V, Mckinnon, B, Mineeva, T, Mirazita, M, Nadel-Turonski, P, Nanda, S, Niccolai, Sn, Niculescu, V, G, Osipenko, M, Paolone, M, Pappalardo, Ll, Paremuzyan, R, Park, K, Pasyuk, E, Phelps, W, Pogorelko, O, Price, Jw, Prok, Y, Protopopescu, D, Ripani, M, Riser, D, Rizzo, A, Rosner, G, Rowley, J, Sabatié, F, Salgado, C, Schumacher, Ra, Sharabian, Yg, Shrestha, U, Sokhan, D, Soto, O, Sparveris, N, Stepanyan, S, Stoler, P, Strakovsky, Ii, Strauch, S, Taiuti, M, Tan, Ja, Tyler, N, Venturelli, L, Voskanyan, H, Voutier, E, Wang, R, Wei, X, Wood, Mh, Zachariou, N, and The CLAS Collaboration
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Settore FIS/04 - Published
- 2020
195. Exclusive π0p electroproduction off protons in the resonance region at photon virtualities 0.4 GeV2≤Q2≤1 GeV2
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Markov, N., Joo, K., Burkert, V. D., Mokeev, V. I., Smith, L. C., Ungaro, M., Adhikari, S., Amaryan, M. J., Angelini, G., Atac, H., Avakian, H., Ayerbe Gayoso, C., Baltzell, N. A., Barion, L., Battaglieri, M., Bedlinskiy, I., Benmokhtar, F., Biselli, A. S., Bossu, F., Boiarinov, S., Briscoe, W. J., Brooks, W. K., Carman, D. S., Carvajal, J. C., Celentano, A., Chatagnon, P., Chetry, T., Cole, P. L., Contalbrigo, M., Crede, V., Ciullo, G., D'Angelo, A., Dashyan, N., De Vita, R., De Sanctis, E., Defurne, M., Deur, A., Diehl, S., Djalali, C., Dupre, R., Ehrhart, M., El Alaoui, A., El Fassi, L., Eugenio, P., Evans, C., Filippi, A., Ghandilyan, Y., Girod, F. X., Golovatch, E., Gothe, R. W., Griffioen, K. A., Guidal, M., Hafidi, K., Hakobyan, H., Hattawy, M., Hayward, T. B., Hicks, K., Holtrop, M., Ilieva, Y., Ireland, D. G., Ishkhanov, B. S., Isupov, E. L., Jenkins, D., H. S., Jo, Keller, D., Khachatryan, M., Khanal, A., Khandaker, M., Kim, A., Kim, C. W., Kim, W., Klein, F. J., Kubarovsky, V., Lanza, L., Leali, M., Livingston, K., Macgregor, I. J. D., Marchand, D., Mascagna, V., Mckinnon, B., Mineeva, T., Mirazita, M., Nadel-Turonski, P., Nanda, S., Niccolai, S., Niculescu, G., Osipenko, M., Paolone, M., Pappalardo, L. L., Paremuzyan, R., Park, K., Pasyuk, E., Phelps, W., Pogorelko, O., Price, J. W., Prok, Y., Protopopescu, D., Ripani, M., Riser, D., Rizzo, A., Rosner, G., Rowley, J., Sabatie, F., Salgado, C., Schumacher, R. A., Sharabian, Y. G., Shrestha, U., Sokhan, D., Soto, O., Sparveris, N., Stepanyan, S., Stoler, P., Strakovsky, I. I., Strauch, S., Taiuti, M., Tan, J. A., Tyler, N., Venturelli, L., Voskanyan, H., Voutier, E., Wang, R., Wei, X., Wood, M. H., and Zachariou, N.
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Elementary Particles ,Photoproduction ,Quark Model ,PE2_2 ,PE2_1 ,Socio-culturale ,PE2_3 - Published
- 2020
196. First measurement of direct photoproduction of the a 2 ( 1320 ) 0 meson on the proton
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Celentano, A., Battaglieri, M., Angelini, G., Mokeev, V., Movsisyan, A., Munevar, E., Munoz Camacho, C., Nadel-Turonski, P., Neupane, K., Niccolai, S., Niculescu, G., Osipenko, M., Ostrovidov, A. I., Atac, H., Paolone, M., Pappalardo, L. L., Paremuzyan, R., Pasyuk, E., Phelps, W., Pogorelko, O., Price, J. W., Prok, Y., Ripani, M., Ritman, J., Barion, L., Rizzo, A., Rosner, G., Rowley, J., Sabatié, F., Salgado, C., Schmidt, Anne, Tichelbäcker, Laura, Shrestha, U., Sokan, D., Soto, O., Bedlinskiy, I., Sparveris, N., Stepanyan, S., Strakovsky, I. I., Strauch, S., Tan, J. A., Tyler, N., Ungaro, M., Venturelli, L., Voskanyan, H., Voutier, E., Benmokhtar, Fatiha, Watts, D., Wei, X., Wood, M. H., Zachariou, N., Zhang, Jiayuan, Zhao, Z. W., Bianconi, A., Biselli, A. S., Bossù, F., Boiarinov, S., Briscoe, W. J., De Vita, R., Brooks, W. K., Bulumulla, D., Burkert, V. D., Carman, D. S., Carvajal, J. C., Chatagnon, P., Chetry, T., Ciullo, G., Clark, L., Cole, P. L., Marsicano, L., Contalbrigo, M., Cortes, O., Crede, V., Cruz-Torres, R., D'Angelo, A., Dashyan, N., Defurne, M., Deur, A., Diehl, S., Djalali, C., Mathieu, V., Dugger, M., Dupre, R., Egiyan, H., Ehrhart, M., El Alaoui, A., El Fassi, L., Elouadrhiri, L., Eugenio, P., Fedotov, G., Fersch, R., Pilloni, A., Filippi, A., Gavalian, G., Gevorgyan, N., Girod, F. X., Glazier, D. I., Gohn, W., Golovatch, E., Gothe, R. W., Griffioen, K. A., Guidal, M., Szczepaniak, A., Hafidi, K., Hakobyan, H., Harrison, N., Hattawy, M., Hauenstein, F., Hayward, T. B., Heddle, D., Hicks, K., Hobart, A., Holtrop, M., Adhikari, K. P., Ilieva, Y., Ireland, D. G., Ishkhanov, B. S., Isupov, E. L., Jenkins, D., Jo, H. S., Joo, K., Joosten, S., Keller, D., Khachatryan, M., Adhikari, S., Khanal, A., Khandaker, M., Kim, A., Kim, C. W., Kim, W., Klein, F. J., Kubarovsky, V., Lanza, L., Leali, M., Lenisa, P., Amaryan, M. J., Livingston, K., Lucherini, V., MacGregor, I. J. D., Marchand, D., Markov, N., Mascagna, V., McCracken, M. E., McKinnon, B., Meziani, Z.-E., and Mirazita, M.
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High Energy Physics::Experiment ,ddc:530 ,Nuclear Experiment - Abstract
We present the first measurement of the reaction gamma p -> a(2) (1320)(0) p in the photon energy range 3.5-5.5 GeV and four-momentum transfer squared 0.2 < -t < 2.0 GeV2. Data were collected with the CEBAF Large Acceptance Spectrometer detector at the Thomas Jefferson National Accelerator Facility. The a(2) resonance was detected by measuring the reaction gamma p -> pi(0)eta p Tip and reconstructing the pi(0)eta invariant mass. The most prominent feature of the differential cross section is a dip at -t approximate to 0.55 GeV2. This can be described in the framework of Regge phenomenology, where the exchange degeneracy hypothesis predicts a zero in the reaction amplitude for this value of the four-momentum transfer.
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- 2020
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197. Probing the core of the strong nuclear interaction
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Schmidt, A, Pybus, J, Weiss, R, Segarra, E, Hrnjic, A, Denniston, A, Hen, O, Piasetzky, E, Weinstein, L, Barnea, N, Strikman, M, Larionov, A, Higinbotham, D, Adhikari, S, Amaryan, M, Angelini, G, Asryan, G, Atac, H, Avakian, H, Gayoso, C, Baashen, L, Barion, L, Bashkanov, M, Battaglieri, M, Beck, A, Bedlinskiy, I, Benmokhtar, F, Bianconi, A, Biselli, A, Bossu, F, Boiarinov, S, Brahim, M, Briscoe, W, Brooks, W, Burkert, V, Cao, F, Carman, D, Carvajal, J, Celentano, A, Chatagnon, P, Chetry, T, Ciullo, G, Clark, L, Cohen, E, Cole, P, Contalbrigo, M, Crede, V, Cruz-Torres, R, D'Angelo, A, Dashyan, N, De Vita, R, De Sanctis, E, Defurne, M, Deur, A, Diehl, S, Djalali, C, Duer, M, Dugger, M, Dupre, R, Egiyan, H, Ehrhart, M, El Alaoui, A, El Fassi, L, Eugenio, P, Filippi, A, Forest, T, Gavalian, G, Gilad, S, Gilfoyle, G, Giovanetti, K, Girod, F, Giuseppe, C, Glazier, D, Golovatch, E, Gothe, R, Griffioen, K, Guo, L, Hafidi, K, Hakobyan, H, Hanretty, C, Harrison, N, Hattawy, M, Hauenstein, F, Hayward, T, Hicks, K, Holtrop, M, Ilieva, Y, Illari, I, Ireland, D, Ishkanov, B, Isupov, E, Jenkins, D, Hs, J, Joo, K, Keller, D, Khachatryan, M, Khanal, A, Khandaker, M, Kim, C, Kim, W, Klein, F, Korover, I, Kubarovsky, V, Lanza, L, Leali, M, Lenisa, P, Macgregor, I, Marchand, D, Markov, N, Marsicano, L, Mascagna, V, Beck, S, Mckinnon, B, Mirazita, M, Mokeev, V, Camacho, C, Mustafa, B, Nadel-Turonski, P, Nanda, S, Niccolai, S, Niculescu, G, Osipenko, M, Ostrovidov, A, Paolone, M, Pappalardo, L, Paremuzyan, R, Park, K, Pasyuk, E, Patsyuk, M, Phelps, W, Pogorelko, O, Price, J, Prok, Y, Protopopescu, D, Ripani, M, Riser, D, Rizzo, A, Rosner, G, Rossi, P, Sabatie, F, Salgado, C, Schmookler, B, Schumacher, R, Sharabian, Y, Shrestha, U, Skorodumina, I, Sokhan, D, Soto, O, Sparveris, N, Stepanyan, S, Strakovsky, I, Strauch, S, Tan, J, Tyler, N, Ungaro, M, Venturelli, L, Voskanyan, H, Voutier, E, Wang, R, Watts, D, Wei, X, Wood, M, Zachariou, N, Zhang, J, Zhao, Z, Zheng, X, Institut de Recherches sur les lois Fondamentales de l'Univers (IRFU), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay, Institut de Physique Nucléaire d'Orsay (IPNO), Université Paris-Sud - Paris 11 (UP11)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS), CLAS, and Centre National de la Recherche Scientifique (CNRS)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Paris-Sud - Paris 11 (UP11)
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Nuclear Theory ,nucleon: pair ,Socio-culturale ,Nuclear Interactions ,FOS: Physical sciences ,[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex] ,Nuclear Structure ,spin: dependence ,01 natural sciences ,7. Clean energy ,Nuclear physics ,Nuclear Theory (nucl-th) ,PE2_1 ,CLAS ,0103 physical sciences ,quantum chromodynamics ,Neutron ,density: high ,Nuclear Models ,Quarks and Gluons ,Electron Scattering ,Spin Dependent Cross Sections ,Nuclear Experiment (nucl-ex) ,010306 general physics ,neutron star ,Nuclear Experiment ,PE2_3 ,nucleus: interaction ,Physics ,Quantum chromodynamics ,Multidisciplinary ,010308 nuclear & particles physics ,Settore FIS/04 ,Nuclear matter ,Fundamental interaction ,quark gluon: interaction ,Neutron star ,electron: scattering ,kinematics ,nuclear matter ,Atomic nucleus ,Quark–gluon plasma ,Nucleon ,experimental results - Abstract
The strong nuclear interaction between nucleons (protons and neutrons) is the effective force that holds the atomic nucleus together. This force stems from fundamental interactions between quarks and gluons (the constituents of nucleons) that are described by the equations of Quantum Chromodynamics (QCD). However, as these equations cannot be solved directly, physicists resort to describing nuclear interactions using effective models that are well constrained at typical inter-nucleon distances in nuclei but not at shorter distances. This limits our ability to describe high-density nuclear matter such as in the cores of neutron stars. Here we use high-energy electron scattering measurements that isolate nucleon pairs in short-distance, high-momentum configurations thereby accessing a kinematical regime that has not been previously explored by experiments, corresponding to relative momenta above 400 MeV/c. As the relative momentum between two nucleons increases and their separation thereby decreases, we observe a transition from a spin-dependent tensor-force to a predominantly spin-independent scalar-force. These results demonstrate the power of using such measurements to study the nuclear interaction at short-distances and also support the use of point-like nucleons with two- and three-body effective interactions to describe nuclear systems up to densities several times higher than the central density of atomic nuclei., Comment: Total 26 pages, 13 figures. Main text: 8 pages, 3 figures. Methods section: 6 pages. Extended Data: 8 figures, 1 table. Supplementary Materials: 8 pages, 2 figures
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- 2020
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198. Exclusive π0p electroproduction off protons in the resonance region at photon virtualities 0.4 GeV2≤Q2≤1 GeV2 EXCLUSIVE π0p ELECTROPRODUCTION off ⋯ N. MARKOV et al
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Markov, N., Joo, K., Burkert, V. D., Mokeev, V. I., Smith, L. C., Ungaro, M., Adhikari, S., Amaryan, M. J., Angelini, G., Atac, H., Avakian, H., Ayerbe Gayoso, C., Baltzell, N. A., Barion, L., Battaglieri, M., Bedlinskiy, I., Benmokhtar, F., Biselli, A. S., Bossu, F., Boiarinov, S., Briscoe, W. J., Brooks, W. K., Carman, D. S., Carvajal, J. C., Celentano, A., Chatagnon, P., Chetry, T., Cole, P. L., Contalbrigo, M., Crede, V., Ciullo, G., D'Angelo, A., Dashyan, N., De Vita, R., De Sanctis, E., Defurne, M., Deur, A., Diehl, S., Djalali, C., Dupre, R., Ehrhart, M., El Alaoui, A., El Fassi, L., Eugenio, P., Evans, C., Filippi, A., Ghandilyan, Y., Girod, F. X., Golovatch, E., Gothe, R. W., Griffioen, K. A., Guidal, M., Hafidi, K., Hakobyan, H., Hattawy, M., Hayward, T. B., Hicks, K., Holtrop, M., Ilieva, Y., Ireland, D. G., Ishkhanov, B. S., Isupov, E. L., Jenkins, D., H. S., Jo, Keller, D., Khachatryan, M., Khanal, A., Khandaker, M., Kim, A., Kim, C. W., Kim, W., Klein, F. J., Kubarovsky, V., Lanza, L., Leali, M., Livingston, K., Macgregor, I. J. D., Marchand, D., Mascagna, V., Mckinnon, B., Mineeva, T., Mirazita, M., Nadel-Turonski, P., Nanda, S., Niccolai, S., Niculescu, G., Osipenko, M., Paolone, M., Pappalardo, L. L., Paremuzyan, R., Park, K., Pasyuk, E., Phelps, W., Pogorelko, O., Price, J. W., Prok, Y., Protopopescu, D., Ripani, M., Riser, D., Rizzo, A., Rosner, G., Rowley, J., Sabatie, F., Salgado, C., Schumacher, R. A., Sharabian, Y. G., Shrestha, U., Sokhan, D., Soto, O., Sparveris, N., Stepanyan, S., Stoler, P., Strakovsky, I. I., Strauch, S., Taiuti, M., Tan, J. A., Tyler, N., Venturelli, L., Voskanyan, H., Voutier, E., Wang, R., Wei, X., Wood, M. H., and Zachariou, N.
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- 2020
199. Exclusive ${\pi^{0}p}$ electroproduction off protons in the resonance region at photon virtualities 0.4 GeV${^{2}}$ ${\leq~ Q^{2} \leq~1}$ GeV${^{2}}$
- Author
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Markov, N., Joo, K., Burkert, V. D., Mokeev, V. I., Smith, L. C., Ungaro, M., Adhikari, S., ~Amaryan, M. J., Angelini, G., ~Atac, H., ~Avakian, H., Gayoso, C. Ayerbe, ~Baltzell, N. A., Barion, L., ~Battaglieri, M., ~Bedlinskiy, I., Benmokhtar, F., ~Biselli, A. S., ~Bossù, F., ~Boiarinov, S., ~Briscoe, W. J., ~Brooks, W. K., ~Carman, D. S., ~Carvajal, J. C., ~Celentano, A., ~Chatagnon, P., Chetry, T., ~Cole, P. L., ~Contalbrigo, M., ~Crede, V., Ciullo, G., ~D'Angelo, A., ~Dashyan, N., ~De~Vita, R., ~De~Sanctis, E., Defurne, M., ~Deur, A., Diehl, S., ~Djalali, C., ~Dupre, R., ~Ehrhart, M., ~El~Alaoui, A., ~El~Fassi, L., ~Eugenio, P., ~Evans, C., ~Filippi, A., ~Ghandilyan, Y., ~Girod, F. X., ~Golovatch, E., ~Gothe, R. W., ~Griffioen, K. A., ~Guidal, M., ~Hafidi, K., ~Hakobyan, H., ~Hattawy, M., ~Hayward, T. B., ~Hicks, K., ~Holtrop, M., ~Ilieva, Y., ~Ireland, D. G., ~Ishkhanov, B. S., ~Isupov, E. L., ~Jenkins, D., ~Jo, H. S., ~Keller, D., ~Khachatryan, M., ~Khanal, A., ~Khandaker, M., ~Kim, A., ~Kim, C. W., ~Kim, W., ~Klein, F. J., ~Kubarovsky, V., Lanza, L., ~Leali, M., ~Livingston, K., ~MacGregor, I . J . D., ~Marchand, D., ~Mascagna, V., ~McKinnon, B., ~Mineeva, T., ~Mirazita, M., ~Nadel-Turonski, P., ~Nanda, S., ~Niccolai, S., ~Niculescu, G., ~Osipenko, M., ~Paolone, M., ~Pappalardo, L. L., ~Paremuzyan, R., ~Park, K., ~Pasyuk, E., ~Phelps, W., ~Pogorelko, O., ~Price, J. W., ~Prok, Y., ~Protopopescu, D., ~Ripani, M., Riser, D., ~Rizzo, A., ~Rowley, J., ~Sabatié, F., ~Salgado, C., ~Schumacher, R. A., ~Sharabian, Y. G., ~Shrestha, U., ~Sokhan, D., ~Soto, O., ~Sparveris, N., ~Stepanyan, S., ~Stoler, P., ~Strakovsky, I. I., ~Strauch, S., ~Taiuti, M., ~Tan, J. A., ~Tyler, N., ~Venturelli, L., ~Voskanyan, H., ~Voutier, E., Wang, R., ~Wei, X., ~Wood, M. H., ~Zachariou, N., Institut de Recherches sur les lois Fondamentales de l'Univers (IRFU), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay, Institut de Physique Nucléaire d'Orsay (IPNO), Centre National de la Recherche Scientifique (CNRS)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Paris-Sud - Paris 11 (UP11), CLAS, and Université Paris-Sud - Paris 11 (UP11)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS)
- Subjects
Hadronic Physics and QCD ,[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex] ,Nuclear Experiment - Abstract
The exclusive electroproduction process $ep \rightarrow e'p'\pi^{0}$ was measured in the range of photon virtualities $Q^{2} = 0.4 - 1.0$~GeV$^{2}$ and the invariant mass range of the $p\pi^{0}$ system of $W = 1.1 - 1.8$~GeV. These kinematics are covered in exclusive $\pi^{0}$ electroproduction off the proton with nearly complete angular coverage in the $p\pi^{0}$ center-of-mass system and with high statistical accuracy. Nearly 36000 cross section points were measured, and the structure functions $\sigma_T+\epsilon\sigma_L$, $\sigma_{LT}$, and $\sigma_{TT}$, were extracted via fitting the $\phi_{\pi^{0}}$ dependence of the cross section. A Legendre polynomial expansion analysis demonstrates the sensitivity of our data to high-lying $N^*$ and $\Delta^{*}$ resonances with $M~>~1.6$ GeV. As part of a broad effort to determine the electrocouplings of the $N^{*}$ and $\Delta^{*}$ resonances using both single- and double-pion electroproduction, this dataset is crucial for the reliable extraction of the high-lying resonance electrocouplings from the combined isospin analysis of the $N \pi$ and $\pi^{+}\pi^{-} p$ channels., Comment: 21 pages, 24 figures
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- 2020
- Full Text
- View/download PDF
200. Photoproduction of ? mesons off the proton for 1.2<4.7 GeV using CLAS at Jefferson Laboratory
- Author
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Hu, T., Akbar, Z., Crede, V., Adhikari, K. P., Adhikari, S., Amaryan, M. J., Angelini, G., Asryan, G., Atac, H., Ayerbe Gayoso, C., Barion, L., Battaglieri, M., Bedlinskiy, I., Benmokhtar, F., Bianconi, A., Biselli, A. S., Bossu, F., Boiarinov, S., Briscoe, W. J., Brooks, W. K., Carman, D. S., Carvajal, J., Celentano, A., Chatagnon, P., Chetry, T., Ciullo, G., Clark, L., Clary, B. A., Cole, P. L., Contalbrigo, M., Cruz-Torres, R., D'Angelo, A., Dashyan, N., De Vita, R., Defurne, M., Deur, A., Diehl, S., Djalali, C., Dugger, M., Dupre, R., Egiyan, H., Ehrhart, M., El Alaoui, A., El Fassi, L., Eugenio, P., Fedotov, G., Fersch, R., Filippi, A., Gavalian, G., Gilfoyle, G. P., Girod, F. X., Glazier, D. I., Golovatch, E., Gothe, R. W., Griffioen, K. A., Guidal, M., Guo, L., Hafidi, K., Hakobyan, H., Hanretty, C., Harrison, N., Hattawy, M., Hayward, T. B., Heddle, D., Hicks, K., Hobart, A., Holtrop, M., Ilieva, Y., Illari, I., Ireland, D. G., Ishkhanov, B. S., Isupov, E. L., Jenkins, D., H. S., Jo, Joo, K., Joosten, S., Keller, D., Khachatryan, M., Khanal, A., Khandaker, M., Kim, A., Kim, C. W., Kim, W., Klein, F. J., Kubarovsky, V., Lanza, L., Leali, M., Lenisa, P., Livingston, K., Macgregor, I. J. D., Marchand, D., Markov, N., Mascagna, V., Mccracken, M. E., Mckinnon, B., Meyer, C. A., Meziani, Z. E., Mineeva, T., Mokeev, V., Movsisyan, A., Munevar, E., Munoz Camacho, C., Nadel-Turonski, P., Niccolai, S., Niculescu, G., O'Connell, T., Osipenko, M., Ostrovidov, A. I., Paolone, M., Pappalardo, L. L., Paremuzyan, R., Pasyuk, E., Phelps, W., Pogorelko, O., Poudel, J., Price, J. W., Prok, Y., Protopopescu, D., Raue, B. A., Ripani, M., Ritman, J., Rizzo, A., Rosner, G., Rowley, J., Sabatie, F., Salgado, C., Schmidt, A., Schumacher, R. A., Sharabian, Y. G., Shrestha, U., Skorodumina, I., Sokhan, D., Soto, O., Sparveris, N., Stepanyan, S., Stoler, P., Strakovsky, I. I., Strauch, S., Tan, J. A., Tyler, N., Ungaro, M., Venturelli, L., Voskanyan, H., Voutier, E., Watts, D. P., Wei, K., Wei, X., Wood, M. H., Zachariou, N., Zhang, J., and Zhao, Z. W.
- Published
- 2020
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