459 results on '"Pröbst, F"'
Search Results
2. A Vibration Decoupling System for TES Operation in the COSINUS Dry Dilution Refrigerator
- Author
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Kellermann, M., Angloher, G., Bharadawj, M. R., Cababie, M., Dafinei, I., Di Marco, N., Einfalt, L., Ferroni, F., Fichtinger, S., Filipponi, A., Frank, T., Friedl, M., Ge, Z., Heikinheimo, M., Hughes, M. N., Huitu, K., Maji, R., Mancuso, M., Pagnanini, L., Petricca, F., Pirro, S., Pröbst, F., Profeta, G., Puiu, A., Reindl, F., Schäffner, K., Schieck, J., Schmiedmayer, D., Schreiner, P., Schwertner, C., Stahlberg, M., Stendahl, A., Stukel, M. J., Tresca, C., Wagner, F., Yue, S., Zema, V., and Zhu, Y.
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- 2024
- Full Text
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3. Description and Performance of the COSINUS remoTES Design
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Zema, V., Shera, K., Angloher, G., Bharadwaj, M. R., Cababie, M. R., Dafinei, I., Di Marco, N., Einfalt, L., Ferroni, F., Fichtinger, S., Filipponi, A., Frank, T., Friedl, M., Ge, Z., Heikinheimo, M., Hughes, M. N., Huitu, K., Kellermann, M., Maji, R., Mancuso, M., Pagnanini, L., Petricca, F., Pirro, S., Pröbst, F., Profeta, G., Puiu, A., Reindl, F., Schäffner, K., Schieck, J., Schmiedmayer, D., Schreiner, P. R., Schwertner, C., Stahlberg, M., Stendahl, A., Stukel, M., Tresca, C., Wagner, F., Yue, S., and Zhu, Y.
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- 2024
- Full Text
- View/download PDF
4. Detector Development for the CRESST Experiment
- Author
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Angloher, G., Banik, S., Benato, G., Bento, A., Bertolini, A., Breier, R., Bucci, C., Burkhart, J., Canonica, L., D’Addabbo, A., Di Lorenzo, S., Einfalt, L., Erb, A., Feilitzsch, F. V., Fichtinger, S., Fuchs, D., Garai, A., Ghete, V. M., Gorla, P., Guillaumon, P. V., Gupta, S., Hauff, D., Ješkovský, M., Jochum, J., Kaznacheeva, M., Kinast, A., Kluck, H., Kraus, H., Kuckuk, S., Langenkämper, A., Mancuso, M., Marini, L., Mauri, B., Meyer, L., Mokina, V., Olmi, M., Ortmann, T., Pagliarone, C., Pattavina, L., Petricca, F., Potzel, W., Povinec, P., Pröbst, F., Pucci, F., Reindl, F., Rothe, J., Schäffner, K., Schieck, J., Schönert, S., Schwertner, C., Stahlberg, M., Stodolsky, L., Strandhagen, C., Strauss, R., Usherov, I., Wagner, F., Willers, M., and Zema, V.
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- 2024
- Full Text
- View/download PDF
5. Optimal Operation of Cryogenic Calorimeters Through Deep Reinforcement Learning
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Angloher, G., Banik, S., Benato, G., Bento, A., Bertolini, A., Breier, R., Bucci, C., Burkhart, J., Canonica, L., D’Addabbo, A., Di Lorenzo, S., Einfalt, L., Erb, A., v. Feilitzsch, F., Fichtinger, S., Fuchs, D., Garai, A., Ghete, V. M., Gorla, P., Guillaumon, P. V., Gupta, S., Hauff, D., Ješkovský, M., Jochum, J., Kaznacheeva, M., Kinast, A., Kuckuk, S., Kluck, H., Kraus, H., Langenkämper, A., Mancuso, M., Marini, L., Mauri, B., Meyer, L., Mokina, V., Niedermayer, K., Olmi, M., Ortmann, T., Pagliarone, C., Pattavina, L., Petricca, F., Potzel, W., Povinec, P., Pröbst, F., Pucci, F., Reindl, F., Rothe, J., Schäffner, K., Schieck, J., Schönert, S., Schwertner, C., Stahlberg, M., Stodolsky, L., Strandhagen, C., Strauss, R., Usherov, I., Wagner, F., Wagner, V., Willers, M., Zema, V., Heitzinger, C., and Waltenberger, W.
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- 2024
- Full Text
- View/download PDF
6. Erratum to: DoubleTES detectors to investigate the CRESST low energy background: results from above-ground prototypes
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Angloher, G., Banik, S., Benato, G., Bento, A., Bertolini, A., Breier, R., Bucci, C., Burkhart, J., Canonica, L., D’Addabbo, A., Lorenzo, S. Di, Einfalt, L., Erb, A., Feilitzsch, F. v., Fichtinger, S., Fuchs, D., Garai, A., Ghete, V. M., Gorla, P., Guillaumon, P. V., Gupta, S., Hauff, D., Ješkovský, M., Jochum, J., Kaznacheeva, M., Kinast, A., Kluck, H., Kraus, H., Kuckuk, S., Langenkämper, A., Mancuso, M., Marini, L., Mauri, B., Meyer, L., Mokina, V., Olmi, M., Ortmann, T., Pagliarone, C., Pattavina, L., Petricca, F., Potzel, W., Povinec, P., Pröbst, F., Pucci, F., Reindl, F., Rothe, J., Schäffner, K., Schieck, J., Schönert, S., Schwertner, C., Stahlberg, M., Stodolsky, L., Strandhagen, C., Strauss, R., Usherov, I., Wagner, F., Wagner, V., and Zema, V.
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- 2024
- Full Text
- View/download PDF
7. Constraints on self-interaction cross-sections of dark matter in universal bound states from direct detection
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Angloher, G., Banik, S., Benato, G., Bento, A., Bertolini, A., Breier, R., Bucci, C., Burkhart, J., Cipelli, E., Canonica, L., D’Addabbo, A., Di Lorenzo, S., Einfalt, L., Erb, A., Feilitzsch, F. v., Fichtinger, S., Fuchs, D., Garai, A., Ghete, V. M., Gorla, P., Guillaumon, P. V., Gupta, S., Hauff, D., Ješkovský, M., Jochum, J., Kaznacheeva, M., Kinast, A., Kuckuk, S., Kluck, H., Kraus, H., Langenkämper, A., Mancuso, M., Marini, L., Mauri, B., Meyer, L., Mokina, V., Olmi, M., Ortmann, T., Pagliarone, C., Pattavina, L., Petricca, F., Potzel, W., Povinec, P., Pröbst, F., Pucci, F., Reindl, F., Rothe, J., Schäffner, K., Schieck, J., Schönert, S., Schwertner, C., Stahlberg, M., Stodolsky, L., Strandhagen, C., Strauss, R., Usherov, I., Wagner, F., Wagner, V., and Zema, V.
- Published
- 2024
- Full Text
- View/download PDF
8. Solar neutrinos in cryogenic detectors
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Bento, A., Bertolini, A., Canonica, L., Di Lorenzo, S., Dominsky, F., Iachellini, N. Ferreiro, Fuchs, D., Garai, A., Hauff, D., Langenkämper, A., Mancuso, M., Mauri, B., Petricca, F., Pröbst, F., Pucci, F., and Stodolsky, L.
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- 2024
- Full Text
- View/download PDF
9. DoubleTES detectors to investigate the CRESST low energy background: results from above-ground prototypes
- Author
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Angloher, G., Banik, S., Benato, G., Bento, A., Bertolini, A., Breier, R., Bucci, C., Burkhart, J., Canonica, L., D’Addabbo, A., Lorenzo, S. Di, Einfalt, L., Erb, A., Feilitzsch, F. v., Fichtinger, S., Fuchs, D., Garai, A., Ghete, V. M., Gorla, P., Guillaumon, P. V., Gupta, S., Hauff, D., Ješkovský, M., Jochum, J., Kaznacheeva, M., Kinast, A., Kluck, H., Kraus, H., Kuckuk, S., Langenkämper, A., Mancuso, M., Marini, L., Mauri, B., Meyer, L., Mokina, V., Olmi, M., Ortmann, T., Pagliarone, C., Pattavina, L., Petricca, F., Potzel, W., Povinec, P., Pröbst, F., Pucci, F., Reindl, F., Rothe, J., Schäffner, K., Schieck, J., Schönert, S., Schwertner, C., Stahlberg, M., Stodolsky, L., Strandhagen, C., Strauss, R., Usherov, I., Wagner, F., Wagner, V., and Zema, V.
- Published
- 2024
- Full Text
- View/download PDF
10. A likelihood framework for cryogenic scintillating calorimeters used in the CRESST dark matter search
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Angloher, G., Banik, S., Benato, G., Bento, A., Bertolini, A., Breier, R., Bucci, C., Burkhart, J., Canonica, L., D’Addabbo, A., Lorenzo, S. Di, Einfalt, L., Erb, A., Feilitzsch, F. v., Fichtinger, S., Fuchs, D., Garai, A., Ghete, V. M., Gorla, P., Guillaumon, P. V., Gupta, S., Hauff, D., Ješkovský, M., Jochum, J., Kaznacheeva, M., Kinast, A., Kluck, H., Kraus, H., Kuckuk, S., Langenkämper, A., Mancuso, M., Marini, L., Mauri, B., Meyer, L., Mokina, V., Olmi, M., Ortmann, T., Pagliarone, C., Pattavina, L., Petricca, F., Potzel, W., Povinec, P., Pröbst, F., Pucci, F., Reindl, F., Rothe, J., Schäffner, K., Schieck, J., Schmiedmayer, D., Schönert, S., Schwertner, C., Stahlberg, M., Stodolsky, L., Strandhagen, C., Strauss, R., Usherov, I., Wagner, F., Wagner, V., and Zema, V.
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- 2024
- Full Text
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11. Coherent elastic neutrino-nucleus scattering: Terrestrial and astrophysical applications
- Author
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Abdullah, M., Abele, H., Akimov, D., Angloher, G., Aristizabal-Sierra, D., Augier, C., Balantekin, A. B., Balogh, L., Barbeau, P. S., Baudis, L., Baxter, A. L., Beaufort, C., Beaulieu, G., Belov, V., Bento, A., Berge, L., Bernardi, I. A., Billard, J., Bolozdynya, A., Bonhomme, A., Bres, G., Bret, J-. L., Broniatowski, A., Brossard, A., Buck, C., Cadeddu, M., Calvo, M., Canonica, L., Cappella, F., Cardani, L., Casali, N., Cazes, A., Cerulli, R., Chaize, D., Chang, C., Chapellier, M., Chaplinsky, L., Chemin, G., Chen, R., Colantoni, I., Colas, J., Coloma, P., Corcoran, E. C., Crawford, S., Cruciani, A., Fard, A. Dastgheibi, De Jesus, M., de Marcillac, P., De Romeri, V., del Castello, G., del GalloRoccagiovine, M., Delicato, D., Demarteau, M., Deng, Y., Dent, J. B., Denton, P. B., Dering, K., Doblhammer, A., Dordei, F., Dorer, S., Dumoulin, L., Dunford, D., Dutta, B., Erhart, A., Exshaw, O., Ferriol, S., Figueroa-Feliciano, E., Filippini, J. B., Flores, L . J., Formaggio, J. A., Friedl, M., Fuard, S., Gao, F., Garai, A., Garces, E. A., Gascon, J., Gehrlein, J., Gerbier, G., Ghete, V. M., Giomataris, I., Giroux, G., Giuliani, A., Giunti, C., Gorel, P., Goupy, C., Goupy, J., Goy, C., Green, M. P., Gros, M., Guerin, C., Guidi, V., Guillaudin, O., Guy, E., Ha, C., Hauff, D., Hakenmuller, J., Harrington, P. M., Hedges, S., Heine, S. T., Hertel, S., Heusch, M., Hoarau, C., Hoferichter, M., Hoppe, E. W., Hong, Z., Horiuchi, S., Huber, P., Ianigro, J. C., Jachowicz, N., Jericha, E., Jin, Y., Johnston, J. P., Juillard, A., Katsioulas, I., Kazarcev, S., Kaznacheeva, M., Kelly, F., Kelly, K. J., Kim, D., Kinast, A., Klinkenberg, L., Kluck, H., Knights, P., Ko, Y. J., Kosmas, T. S., Kwon, L., Lamblin, J., Lang, R. F., Langenkamper, A., Langrock, S., Lasserre, T., Lattaud, H., Lautridou, P., Lee, H. S., Lenardo, B. G., Lhuillier, D., Li, M., Li, S. C., Li, Y. F., Li, Z., Lindner, M., Liu, J., Loomba, D., Lubashevskiy, A., Machado, P. A. N., Mancuso, M., Maneschg, W., Markoff, D. M., Marnieros, S., Martin, R., Martin, R. D., Mauri, B., Mayer, D. W., Mazzolari, A., Mazzucato, E., Menendez, J., Minet, J., Miranda, O. G., Misiak, D., Mols, J. -P., Monfardini, A., Mounier, F., Muraz, J. F., Neep, T., Neilson, R., Newby, J., Newstead, J. L., Neyrial, H., Ni, K., Nikolopoulos, K., Nones, C., Norcini, D., Pandey, V., O'Brien, P., O'Hare, C. A. J., Oberauer, L., Oliver, W., Olivieri, E., Onillon, A., Oriol, C., Ortmann, T., Owen, R., Palladino, K. J., Papoulias, D. K., Park, J. C., Parno, D. S., Patel, P. K., Pattavina, L., Peinado, E., Perbet, E., Peters, L., Petricca, F., Pinckney, H. D., Piro, M. -C., Ponomarev, D., Poda, D., Potzel, W., Probst, F., Pucci, F., Rarbi, F., Rapp, R., Ray, H., Real, J. -S., Reindl, F., Rich, G. C., Ricol, J. S., Rink, T., Redon, T., Rogly, R., Robert, A., Rothe, J., Rozov, S., Rozova, I., Salagnac, T., Garcia, E. Sanchez, Garcia, G. Sanchez, Sanders, O., Sanglard, V., Santos, D., Sarkis, Y., Savu, V., Savvidis, G., Savvidis, I., Schermer, N., Schieck, J., Schmidt, B., Schonert, S., Scholberg, K., Schwenk, A., Schwertner, C., Scola, L., Shevchik, Ye., Shin, S., Sibille, V., Shoemaker, I. M., Snowden-Ifft, D. P., Soldner, T., Soum, G., Spooner, N. J. C., Stachurska, J., Stodolsky, L., Strauss, R., Strigari, L. E., Stutz, A., Suh, B. D., Suhonen, J., Tabrizi, Z., Takhistov, V., Thompson, A., Tomei, C., Tortola, M., Tripathi, M., Vagneron, L., Valle, J. W. F., Mirbach, K. v., Van De Ponteseele, W., Vignati, M., Vivier, M., Fernandez, F. Vazquez de Sola, Vezzu, F., Vidal, M., Wagner, V., Walker, J. W., Ward, R., Wex, A., Winslow, L., Wong, H. T., Wood, M. H., Xu, J., Yang, L., Yakushev, E., Zampaolo, M., Zettlemoyer, J., Zhang, Y. Y., and Zinatulina, D.
- Subjects
High Energy Physics - Phenomenology ,Astrophysics - High Energy Astrophysical Phenomena ,High Energy Physics - Experiment - Abstract
Coherent elastic neutrino-nucleus scattering (CE$\nu$NS) is a process in which neutrinos scatter on a nucleus which acts as a single particle. Though the total cross section is large by neutrino standards, CE$\nu$NS has long proven difficult to detect, since the deposited energy into the nucleus is $\sim$ keV. In 2017, the COHERENT collaboration announced the detection of CE$\nu$NS using a stopped-pion source with CsI detectors, followed up the detection of CE$\nu$NS using an Ar target. The detection of CE$\nu$NS has spawned a flurry of activities in high-energy physics, inspiring new constraints on beyond the Standard Model (BSM) physics, and new experimental methods. The CE$\nu$NS process has important implications for not only high-energy physics, but also astrophysics, nuclear physics, and beyond. This whitepaper discusses the scientific importance of CE$\nu$NS, highlighting how present experiments such as COHERENT are informing theory, and also how future experiments will provide a wealth of information across the aforementioned fields of physics., Comment: contribution to Snowmasss 2021. Contact authors: P. S. Barbeau, R. Strauss, L. E. Strigari
- Published
- 2022
12. Water Cherenkov muon veto for the COSINUS experiment: design and simulation optimization
- Author
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Angloher, G., Bharadwaj, M. R., Cababie, M., Dafinei, I., Di Marco, N., Einfalt, L., Ferroni, F., Fichtinger, S., Filipponi, A., Friedl, M., Fuss, A., Ge, Z., Heikinheimo, M., Hughes, M. N., Huitu, K., Kellermann, M., Maji, R., Mancuso, M., Pagnanini, L., Petricca, F., Pirro, S., Pröbst, F., Profeta, G., Puiu, A., Reindl, F., Schäeffner, K., Schieck, J., Schmiedmayer, D., Schreiner, P., Schwertner, C., Shera, K., Stahlberg, M., Stendhal, A., Stukel, M., Tresca, C., Wagner, F., Yue, S., Zema, V., and Zhu, Y.
- Published
- 2024
- Full Text
- View/download PDF
13. Light dark matter search using a diamond cryogenic detector
- Author
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Angloher, G., Banik, S., Benato, G., Bento, A., Bertolini, A., Breier, R., Bucci, C., Burkhart, J., Canonica, L., D’Addabbo, A., Lorenzo, S. Di, Einfalt, L., Erb, A., Feilitzsch, F. v., Fichtinger, S., Fuchs, D., Garai, A., Ghete, V. M., Gorla, P., Guillaumon, P. V., Gupta, S., Hauff, D., Jes̆kovský, M., Jochum, J., Kaznacheeva, M., Kinast, A., Kluck, H., Kraus, H., Kuckuk, S., Langenkämper, A., Mancuso, M., Marini, L., Mauri, B., Meyer, L., Mokina, V., Olmi, M., Ortmann, T., Pagliarone, C., Pattavina, L., Petricca, F., Potzel, W., Povinec, P., Pröbst, F., Pucci, F., Reindl, F., Rothe, J., Schäffner, K., Schieck, J., Schönert, S., Schwertner, C., Stahlberg, M., Stodolsky, L., Strandhagen, C., Strauss, R., Usherov, I., Wagner, F., Willers, M., and Zema, V.
- Published
- 2024
- Full Text
- View/download PDF
14. A plastic scintillation muon veto for sub-Kelvin temperatures
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Erhart, A., Wagner, V., Wex, A., Goupy, C., Lhuillier, D., Namuth, E., Nones, C., Rogly, R., Savu, V., Schwarz, M., Strauss, R., Vivier, M., Abele, H., Angloher, G., Bento, A., Burkhart, J., Canonica, L., Cappella, F., Casali, N., Cerulli, R., Cruciani, A., del Castello, G., del Gallo Roccagiovine, M., Doblhammer, A., Dorer, S., Friedl, M., Garai, A., Ghete, V. M., Hauff, D., Jeanneau, F., Jericha, E., Kaznacheeva, M., Kinast, A., Kluck, H., Langenkämper, A., Lasserre, T., Mancuso, M., Martin, R., Mauri, B., Mazzolari, A., Mazzucato, E., Neyrial, H., Oberauer, L., Ortmann, T., Pattavina, L., Peters, L., Petricca, F., Potzel, W., Pröbst, F., Pucci, F., Reindl, F., Romagnoni, M., Rothe, J., Schermer, N., Schieck, J., Schönert, S., Schwertner, C., Scola, L., Soum-Sidikov, G., Stodolsky, L., Tamisari, M., Tomei, C., and Vignati, M.
- Published
- 2024
- Full Text
- View/download PDF
15. Nucleus: Searching for Coherent Neutrino Nucleus Scattering at Lowest Energies
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Kluck, H., Angloher, G., Bento, A., Canonica, L., Cappella, F., Cardani, L., Casali, N., Cerulli, R., Colantoni, I., Cruciani, A., del Castello, G., Erhart, A., Friedl, M., Garai, A., Ghete, V. M., Goupy, C., Guidi, V., Hauff, D., Kaznacheeva, M., Kinast, A., Klinkenberg, L., Langenkämper, A., Lasserre, T., Lhuillier, D., Mancuso, M., Mauri, B., Mazzolari, A., Mazzucato, E., Neyrial, H., Nones, C., Oberauer, L., Onillon, A., Ortmann, T., Pattavina, L., Petricca, F., Potzel, W., Pröbst, F., Pucci, F., Reindl, F., Rogly, R., Rothe, J., Savu, V., Schermer, N., Schieck, J., Schönert, S., Schwertner, C., Scola, L., Stodolsky, L., Strauss, R., Tomei, C., von Mirbach, K., Vignati, M., Vivier, M., Wagner, V., and Wex, A.
- Published
- 2022
- Full Text
- View/download PDF
16. Improving the Quality of CaWO4 Target Crystals for CRESST
- Author
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Kinast, A., Angloher, G., Benato, G., Bento, A., Bertolini, A., Breier, R., Bucci, C., Canonica, L., D’Addabbo, A., Lorenzo, S. Di, Einfalt, L., Erb, A., Feilitzsch, F. V., Iachellini, N. Ferreiro, Fichtinger, S., Fuchs, D., Fuss, A., Garai, A., Ghete, V.-M., Gorla, P., Gupta, S., Hamilton, F., Hauff, D., Ješkovský, M., Jochum, J., Kaznacheeva, M., Kluck, H., Kraus, H., Langenkämper, A., Mancuso, M., Marini, L., Mokina, V., Nilima, A., Olmi, M., Ortmann, T., Pagliarone, C., Palušová, V., Pattavina, L., Petricca, F., Potzel, W., Povinec, P., Pröbst, F., Pucci, F., Reindl, F., Rothe, J., Schäffner, K., Schieck, J., Schmiedmayer, D., Schönert, S., Schwertner, C., Stahlberg, M., Stodolsky, L., Strandhagen, C., Strauss, R., Usherov, I., Wagner, F., Willers, M., and Zema, V.
- Published
- 2022
- Full Text
- View/download PDF
17. Detector Development for the CRESST Experiment
- Author
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Angloher, G, Banik, S, Benato, G, Bento, A, Bertolini, A, Breier, R, Bucci, C, Burkhart, J, Canonica, L, D'Addabbo, A, Di Lorenzo, S, Einfalt, L, Erb, A, Feilitzsch, F, Fichtinger, S, Fuchs, D, Garai, A, Ghete, V, Gorla, P, Guillaumon, P, Gupta, S, Hauff, D, Ješkovský, M, Jochum, J, Kaznacheeva, M, Kinast, A, Kluck, H, Kraus, H, Kuckuk, S, Langenkämper, A, Mancuso, M, Marini, L, Mauri, B, Meyer, L, Mokina, V, Olmi, M, Ortmann, T, Pagliarone, C, Pattavina, L, Petricca, F, Potzel, W, Povinec, P, Pröbst, F, Pucci, F, Reindl, F, Rothe, J, Schäffner, K, Schieck, J, Schönert, S, Schwertner, C, Stahlberg, M, Stodolsky, L, Strandhagen, C, Strauss, R, Usherov, I, Wagner, F, Willers, M, Zema, V, Angloher G., Banik S., Benato G., Bento A., Bertolini A., Breier R., Bucci C., Burkhart J., Canonica L., D'Addabbo A., Di Lorenzo S., Einfalt L., Erb A., Feilitzsch F. V., Fichtinger S., Fuchs D., Garai A., Ghete V. M., Gorla P., Guillaumon P. V., Gupta S., Hauff D., Ješkovský M., Jochum J., Kaznacheeva M., Kinast A., Kluck H., Kraus H., Kuckuk S., Langenkämper A., Mancuso M., Marini L., Mauri B., Meyer L., Mokina V., Olmi M., Ortmann T., Pagliarone C., Pattavina L., Petricca F., Potzel W., Povinec P., Pröbst F., Pucci F., Reindl F., Rothe J., Schäffner K., Schieck J., Schönert S., Schwertner C., Stahlberg M., Stodolsky L., Strandhagen C., Strauss R., Usherov I., Wagner F., Willers M., Zema V., Angloher, G, Banik, S, Benato, G, Bento, A, Bertolini, A, Breier, R, Bucci, C, Burkhart, J, Canonica, L, D'Addabbo, A, Di Lorenzo, S, Einfalt, L, Erb, A, Feilitzsch, F, Fichtinger, S, Fuchs, D, Garai, A, Ghete, V, Gorla, P, Guillaumon, P, Gupta, S, Hauff, D, Ješkovský, M, Jochum, J, Kaznacheeva, M, Kinast, A, Kluck, H, Kraus, H, Kuckuk, S, Langenkämper, A, Mancuso, M, Marini, L, Mauri, B, Meyer, L, Mokina, V, Olmi, M, Ortmann, T, Pagliarone, C, Pattavina, L, Petricca, F, Potzel, W, Povinec, P, Pröbst, F, Pucci, F, Reindl, F, Rothe, J, Schäffner, K, Schieck, J, Schönert, S, Schwertner, C, Stahlberg, M, Stodolsky, L, Strandhagen, C, Strauss, R, Usherov, I, Wagner, F, Willers, M, Zema, V, Angloher G., Banik S., Benato G., Bento A., Bertolini A., Breier R., Bucci C., Burkhart J., Canonica L., D'Addabbo A., Di Lorenzo S., Einfalt L., Erb A., Feilitzsch F. V., Fichtinger S., Fuchs D., Garai A., Ghete V. M., Gorla P., Guillaumon P. V., Gupta S., Hauff D., Ješkovský M., Jochum J., Kaznacheeva M., Kinast A., Kluck H., Kraus H., Kuckuk S., Langenkämper A., Mancuso M., Marini L., Mauri B., Meyer L., Mokina V., Olmi M., Ortmann T., Pagliarone C., Pattavina L., Petricca F., Potzel W., Povinec P., Pröbst F., Pucci F., Reindl F., Rothe J., Schäffner K., Schieck J., Schönert S., Schwertner C., Stahlberg M., Stodolsky L., Strandhagen C., Strauss R., Usherov I., Wagner F., Willers M., and Zema V.
- Abstract
Recently low-mass dark matter direct searches have been hindered by a low-energy background, drastically reducing the physics reach of the experiments. In the CRESST-III experiment, this signal is characterised by a significant increase of events below 200 eV. As the origin of this background is still unknown, it became necessary to develop new detector designs to reach a better understanding of the observations. Within the CRESST collaboration, three new different detector layouts have been developed, and they are presented in this contribution.
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- 2024
18. A plastic scintillation muon veto for sub-Kelvin temperatures
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Erhart, A, Wagner, V, Wex, A, Goupy, C, Lhuillier, D, Namuth, E, Nones, C, Rogly, R, Savu, V, Schwarz, M, Strauss, R, Vivier, M, Abele, H, Angloher, G, Bento, A, Burkhart, J, Canonica, L, Cappella, F, Casali, N, Cerulli, R, Cruciani, A, del Castello, G, del Gallo Roccagiovine, M, Doblhammer, A, Dorer, S, Friedl, M, Garai, A, Ghete, V, Hauff, D, Jeanneau, F, Jericha, E, Kaznacheeva, M, Kinast, A, Kluck, H, Langenkämper, A, Lasserre, T, Mancuso, M, Martin, R, Mauri, B, Mazzolari, A, Mazzucato, E, Neyrial, H, Oberauer, L, Ortmann, T, Pattavina, L, Peters, L, Petricca, F, Potzel, W, Pröbst, F, Pucci, F, Reindl, F, Romagnoni, M, Rothe, J, Schermer, N, Schieck, J, Schönert, S, Schwertner, C, Scola, L, Soum-Sidikov, G, Stodolsky, L, Tamisari, M, Tomei, C, Vignati, M, Erhart, A., Wagner, V., Wex, A., Goupy, C., Lhuillier, D., Namuth, E., Nones, C., Rogly, R., Savu, V., Schwarz, M., Strauss, R., Vivier, M., Abele, H., Angloher, G., Bento, A., Burkhart, J., Canonica, L., Cappella, F., Casali, N., Cerulli, R., Cruciani, A., del Castello, G., del Gallo Roccagiovine, M., Doblhammer, A., Dorer, S., Friedl, M., Garai, A., Ghete, V. M., Hauff, D., Jeanneau, F., Jericha, E., Kaznacheeva, M., Kinast, A., Kluck, H., Langenkämper, A., Lasserre, T., Mancuso, M., Martin, R., Mauri, B., Mazzolari, A., Mazzucato, E., Neyrial, H., Oberauer, L., Ortmann, T., Pattavina, L., Peters, L., Petricca, F., Potzel, W., Pröbst, F., Pucci, F., Reindl, F., Romagnoni, M., Rothe, J., Schermer, N., Schieck, J., Schönert, S., Schwertner, C., Scola, L., Soum-Sidikov, G., Stodolsky, L., Tamisari, M., Tomei, C., Vignati, M., Erhart, A, Wagner, V, Wex, A, Goupy, C, Lhuillier, D, Namuth, E, Nones, C, Rogly, R, Savu, V, Schwarz, M, Strauss, R, Vivier, M, Abele, H, Angloher, G, Bento, A, Burkhart, J, Canonica, L, Cappella, F, Casali, N, Cerulli, R, Cruciani, A, del Castello, G, del Gallo Roccagiovine, M, Doblhammer, A, Dorer, S, Friedl, M, Garai, A, Ghete, V, Hauff, D, Jeanneau, F, Jericha, E, Kaznacheeva, M, Kinast, A, Kluck, H, Langenkämper, A, Lasserre, T, Mancuso, M, Martin, R, Mauri, B, Mazzolari, A, Mazzucato, E, Neyrial, H, Oberauer, L, Ortmann, T, Pattavina, L, Peters, L, Petricca, F, Potzel, W, Pröbst, F, Pucci, F, Reindl, F, Romagnoni, M, Rothe, J, Schermer, N, Schieck, J, Schönert, S, Schwertner, C, Scola, L, Soum-Sidikov, G, Stodolsky, L, Tamisari, M, Tomei, C, Vignati, M, Erhart, A., Wagner, V., Wex, A., Goupy, C., Lhuillier, D., Namuth, E., Nones, C., Rogly, R., Savu, V., Schwarz, M., Strauss, R., Vivier, M., Abele, H., Angloher, G., Bento, A., Burkhart, J., Canonica, L., Cappella, F., Casali, N., Cerulli, R., Cruciani, A., del Castello, G., del Gallo Roccagiovine, M., Doblhammer, A., Dorer, S., Friedl, M., Garai, A., Ghete, V. M., Hauff, D., Jeanneau, F., Jericha, E., Kaznacheeva, M., Kinast, A., Kluck, H., Langenkämper, A., Lasserre, T., Mancuso, M., Martin, R., Mauri, B., Mazzolari, A., Mazzucato, E., Neyrial, H., Oberauer, L., Ortmann, T., Pattavina, L., Peters, L., Petricca, F., Potzel, W., Pröbst, F., Pucci, F., Reindl, F., Romagnoni, M., Rothe, J., Schermer, N., Schieck, J., Schönert, S., Schwertner, C., Scola, L., Soum-Sidikov, G., Stodolsky, L., Tamisari, M., Tomei, C., and Vignati, M.
- Abstract
Rare-event search experiments located on-surface, such as short-baseline reactor neutrino experiments, are often limited by muon-induced background events. Highly efficient muon vetos are essential to reduce the detector background and to reach the sensitivity goals. We demonstrate the feasibility of deploying organic plastic scintillators at sub-Kelvin temperatures. For the NUCLEUS experiment, we developed a cryogenic muon veto equipped with wavelength shifting fibers and a silicon photo multiplier operating inside a dilution refrigerator. The achievable compactness of cryostat-internal integration is a key factor in keeping the muon rate to a minimum while maximizing coverage. The thermal and light output properties of a plastic scintillation detector were examined. We report first data on the thermal conductivity and heat capacity of the polystyrene-based scintillator UPS-923A over a wide range of temperatures extending below one Kelvin. The light output was measured down to 0.8 K and observed to increase by a factor of 1.61 ± 0.05 compared to 300 K. The development of an organic plastic scintillation muon veto operating in sub-Kelvin temperature environments opens new perspectives for rare-event searches with cryogenic detectors at sites lacking substantial overburden.
- Published
- 2024
19. Towards an automated data cleaning with deep learning in CRESST
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Angloher, G., Banik, S., Bartolot, D., Benato, G., Bento, A., Bertolini, A., Breier, R., Bucci, C., Burkhart, J., Canonica, L., D’Addabbo, A., Di Lorenzo, S., Einfalt, L., Erb, A., Feilitzsch, F. v., Iachellini, N. Ferreiro, Fichtinger, S., Fuchs, D., Fuss, A., Garai, A., Ghete, V. M., Gerster, S., Gorla, P., Guillaumon, P. V., Gupta, S., Hauff, D., Ješkovský, M., Jochum, J., Kaznacheeva, M., Kinast, A., Kluck, H., Kraus, H., Lackner, M., Langenkämper, A., Mancuso, M., Marini, L., Meyer, L., Mokina, V., Nilima, A., Olmi, M., Ortmann, T., Pagliarone, C., Pattavina, L., Petricca, F., Potzel, W., Povinec, P., Pröbst, F., Pucci, F., Reindl, F., Rizvanovic, D., Rothe, J., Schäffner, K., Schieck, J., Schmiedmayer, D., Schönert, S., Schwertner, C., Stahlberg, M., Stodolsky, L., Strandhagen, C., Strauss, R., Usherov, I., Wagner, F., Willers, M., Zema, V., and Waltenberger, W.
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- 2023
- Full Text
- View/download PDF
20. Latest observations on the low energy excess in CRESST-III
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G. Angloher, S. Banik, G. Benato, A. Bento, A. Bertolini, R. Breier, C. Bucci, L. Canonica, A. D'Addabbo, S. Di Lorenzo, L. Einfalt, A. Erb, F. von Feilitzsch, N. Ferreiro Iachellini, S. Fichtinger, D. Fuchs, A. Fuss, A. Garai, V. M. Ghete, S. Gerster, P. Gorla, P. V. Guillaumon, S. Gupta, D. Hauff, M. Ješkovský, J. Jochum, M. Kaznacheeva, A. Kinast, H. Kluck, H. Kraus, A. Langenkämper, M. Mancuso, L. Marini, L. Meyer, V. Mokina, A. Nilima, M. Olmi, T. Ortmann, C. Pagliarone, L. Pattavina, F. Petricca, W. Potzel, P. Povinec, F. Pröbst, F. Pucci, F. Reindl, J. Rothe, K. Schäffner, J. Schieck, D. Schmiedmayer, S. Schönert, C. Schwertner, M. Stahlberg, L. Stodolsky, C. Strandhagen, R. Strauss, I. Usherov, F. Wagner, M. Willers, V. Zema
- Subjects
Physics ,QC1-999 - Abstract
The CRESST experiment observes an unexplained excess of events at low energies. In the current CRESST-III data-taking campaign we are operating detector modules with different designs to narrow down the possible explanations. In this work, we show first observations of the ongoing measurement, focusing on the comparison of time, energy and temperature dependence of the excess in several detectors. These exclude dark matter, radioactive backgrounds and intrinsic sources related to the crystal bulk as a major contribution.
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- 2023
- Full Text
- View/download PDF
21. Characterisation of low background CaWO$_4$ crystals for CRESST-III
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A. Kinast, G. Angloher, S. Banik, G. Benato, A. Bento, A. Bertolini, R. Breier, C. Bucci, J. Burkhart, L. Canonica, A. D'Addabbo, S. Di Lorenzo, L. Einfalt, A. Erb, F. v. Feilitzsch, N. Ferreiro Iachellini, S. Fichtinger, D. Fuchs, A. Fuss, A. Garai, V.M. Ghete, S. Gerster, P. Gorla, P.V. Guillaumon, S. Gupta, D. Hauff, M. Ješkovský, J. Jochum, M. Kaznacheeva, H. Kluck, H. Kraus, A. Langenkämper, M. Mancuso, L. Marini, L. Meyer, V. Mokina, A. Nilima, M. Olmi, T. Ortmann, C. Pagliarone, L. Pattavina, F. Petricca, W. Potzel, P. Povinec, F. Pröbst, F. Pucci, F. Reindl, J. Rothe, K. Schäffner, J. Schieck, D. Schmiedmayer, S. Schönert, C. Schwertner, M. Stahlberg, L. Stodolsky, C. Strandhagen, R. Strauss, I. Usherov, F. Wagner, M. Willers, V. Zema (CRESST Collaboration)
- Subjects
Physics ,QC1-999 - Abstract
The CRESST-III experiment aims at the direct detection of dark matter particles via their elastic scattering off nuclei in a scintillating CaWO$_4$ target crystal. For many years CaWO$_4$ crystals have successfully been produced in-house at Technische Universität München with a focus on high radiopurity. To further improve the CaWO$_4$ crystals, an extensive chemical purification of the raw materials has been performed and the crystal TUM93 was produced from this powder. We present results from an $\alpha$-decay rate analysis performed on 344 days of data collected in the ongoing CRESST-III data-taking campaign. The $\alpha$-decay rate could significantly be reduced.
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- 2023
- Full Text
- View/download PDF
22. Exploring coherent elastic neutrino-nucleus scattering of reactor neutrinos with the NUCLEUS experiment
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C. Goupy, H. Abele, G. Angloher, A. Bento, L. Canonica, F. Cappella, L. Cardani, N. Casali, R. Cerulli, I. Colantoni, A. Cruciani, G. del Castello, M. del Gallo Roccagiovine, A. Doblhammer, S. Dorer, A. Erhart, M. Friendl, A. Garai, V. M. Ghete, D. Hauff, F. Jeanneau, E. Jericha, M. Kaznacheeva, A. Kinast, H. Kluck, A. Langenkämper, T. Lasserre, D. Lhuillier, M. Mancuso, B. Mauri, A. Mazzolari, E. Mazzucato, H. Neyrial, C. Nones, L. Oberauer, T. Ortmann, L. Pattavina, L. Peters, F. Petricca, W. Potzel, F. Pröbst, F. Pucci, F. Riendl, R. Rogly, M. Romagnoni, J. Rothe, N. Schermer, J. Schieck, S. Schönert, C. Schwertner, L. Scola, G. Soum Sidikov, L. Stodolsky, R. Strauss, M. Tamisari, C. Tomei, M. Vignati, M. Vivier, V. Wagner, A. Wex (The NUCLEUS collaboration)
- Subjects
Physics ,QC1-999 - Abstract
The NUCLEUS experiment aims to perform a high-precision measurement of Coherent Elastic Neutrino-Nucleus Scattering (CEvNS) at the EdF Chooz B nuclear power plant in France. CEvNS is a unique process to study neutrino properties and to search for physics beyond the Standard Model. The study of CEvNS is also important for light Dark-Matter searches. It could be a possible irreducible background for high-sensitivity Dark-Matter experiments. NUCLEUS is an experiment under construction based on ultra-low threshold ($\sim$20 eV$_{nr}$) cryogenic calorimeters, operated at tens-of-mK temperatures.
- Published
- 2023
- Full Text
- View/download PDF
23. A low-threshold diamond cryogenic detector for sub-GeV dark matter searches
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Abdelhameed, A. H., Angloher, G., Bento, A., Bertoldo, E., Bertolini, A., Canonica, L., Iachellini, N. Ferreiro, Fuchs, D., Garai, A., Hauff, D., Nilima, A., Mancuso, M., Petricca, F., Pröbst, F., Pucci, F., and Rothe, J.
- Published
- 2022
- Full Text
- View/download PDF
24. Dark Matter-Electron Scattering Search Using Cryogenic Light Detectors
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Zema, V., Figueroa, P., Angloher, G., Bharadwaj, M. R., Frank, T., Hughes, M. N., Kellermann, M., Pröbst, F., Schäffner, K., Shera, K., Stahlberg, M., Zema, V., Figueroa, P., Angloher, G., Bharadwaj, M. R., Frank, T., Hughes, M. N., Kellermann, M., Pröbst, F., Schäffner, K., Shera, K., and Stahlberg, M.
- Abstract
The CSC (cryogenic scintillating calorimeter) technology devoted to rare event searches is reaching the sensitivity level required for the hunt of dark matter-electron scatterings. Dark matter-electron interactions in scintillating targets are expected to stimulate the emission of single photons, each of energy equal to the target electronic band gap. The electronic band gap in scintillators like NaI/GaAs is of O(eV). The search for this signal can be done by an array of cryogenic light detectors with eV/sub-eV energy resolution. In this work, we describe the detection principle, the detector response and the envisioned detector design to search for dark matter interacting with electrons via the measurement of the scintillation light at millikelvin. First sensitivity projections are provided, which show the potential of this research.
- Published
- 2024
25. A likelihood framework for cryogenic scintillating calorimeters used in the CRESST dark matter search
- Author
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CRESST Collaboration, Angloher, G., Banik, S., Benato, G., Bento, A., Bertolini, A., Breier, R., Bucci, C., Burkhart, J., Canonica, L., D'Addabbo, A., Di Lorenzo, S., Einfalt, L., Erb, A., Feilitzsch, F. v., Fichtinger, S., Fuchs, D., Garai, A., Ghete, V. M., Gorla, P., Guillaumon, P. V., Gupta, S., Hauff, D., Ješkovský, M., Jochum, J., Kaznacheeva, M., Kinast, A., Kluck, H., Kraus, H., Kuckuk, S., Langenkämper, A., Mancuso, M., Marini, L., Mauri, B., Meyer, L., Mokina, V., Olmi, M., Ortmann, T., Pagliarone, C., Pattavina, L., Petricca, F., Potzel, W., Povinec, P., Pröbst, F., Pucci, F., Reindl, F., Rothe, J., Schäffner, K., Schieck, J., Schmiedmayer, D., Schönert, S., Schwertner, C., Stahlberg, M., Stodolsky, L., Strandhagen, C., Strauss, R., Usherov, I., Wagner, F., Wagner, V., Zema, V., CRESST Collaboration, Angloher, G., Banik, S., Benato, G., Bento, A., Bertolini, A., Breier, R., Bucci, C., Burkhart, J., Canonica, L., D'Addabbo, A., Di Lorenzo, S., Einfalt, L., Erb, A., Feilitzsch, F. v., Fichtinger, S., Fuchs, D., Garai, A., Ghete, V. M., Gorla, P., Guillaumon, P. V., Gupta, S., Hauff, D., Ješkovský, M., Jochum, J., Kaznacheeva, M., Kinast, A., Kluck, H., Kraus, H., Kuckuk, S., Langenkämper, A., Mancuso, M., Marini, L., Mauri, B., Meyer, L., Mokina, V., Olmi, M., Ortmann, T., Pagliarone, C., Pattavina, L., Petricca, F., Potzel, W., Povinec, P., Pröbst, F., Pucci, F., Reindl, F., Rothe, J., Schäffner, K., Schieck, J., Schmiedmayer, D., Schönert, S., Schwertner, C., Stahlberg, M., Stodolsky, L., Strandhagen, C., Strauss, R., Usherov, I., Wagner, F., Wagner, V., and Zema, V.
- Abstract
Cryogenic scintillating calorimeters are ultrasensitive particle detectors for rare event searches, particularly for the search for dark matter and the measurement of neutrino properties. These detectors are made from scintillating target crystals generating two signals for each particle interaction. The phonon (heat) signal precisely measures the deposited energy independent of the type of interacting particle. The scintillation light signal yields particle discrimination on an event-by-event basis. This paper presents a likelihood framework modeling backgrounds and a potential dark matter signal in the two-dimensional plane spanned by phonon and scintillation light energies. We apply the framework to data from CaWO$_4$-based detectors operated in the CRESST dark matter search. For the first time, a single likelihood framework is used in CRESST to model the data and extract results on dark matter in one step by using a profile likelihood ratio test. Our framework simultaneously fits (neutron) calibration data and physics (background) data and allows combining data from multiple detectors. Although tailored to CaWO$_4$-targets and the CRESST experiment, the framework can easily be expanded to other materials and experiments using scintillating cryogenic calorimeters for dark matter search and neutrino physics., Comment: 18 pages, 11 figures, additional figures and data in ancillary files
- Published
- 2024
26. COSINUS: Cryogenic Calorimeters for the Direct Dark Matter Search with NaI Crystals
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Angloher, G., Carniti, P., Dafinei, I., Di Marco, N., Fuss, A., Gotti, C., Mancuso, M., Martella, P., Pagnanini, L., Pessina, G., Petricca, F., Pirro, S., Pröbst, F., Reindl, F., Schäffner, K., Schieck, J., Schmiedmayer, D., Schwertner, C., Stadler, R., Stahlberg, M., Zema, V., and Zhu, Y.
- Published
- 2020
- Full Text
- View/download PDF
27. Operation of a Diamond Cryogenic Detector for Low-Mass Dark Matter Searches
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Canonica, L., Abdelhameed, A. H., Bauer, P., Bento, A., Bertoldo, E., Ferreiro Iachellini, N., Fuchs, D., Hauff, D., Mancuso, M., Petricca, F., Pröbst, F., and Rothe, J.
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- 2020
- Full Text
- View/download PDF
28. Deposition of Tungsten Thin Films by Magnetron Sputtering for Large-Scale Production of Tungsten-Based Transition-Edge Sensors
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Abdelhameed, A. H., Angloher, G., Bauer, P., Bento, A., Bertoldo, E., Canonica, L., Fuchs, D., Hauff, D., Iachellini, N. Ferreiro, Mancuso, M., Petricca, F., Pröbst, F., Riesch, J., and Rothe, J.
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- 2020
- Full Text
- View/download PDF
29. Simulation-based design study for the passive shielding of the COSINUS dark matter experiment
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Angloher, G., Dafinei, I., Marco, N. Di, Ferroni, F., Fichtinger, S., Filipponi, A., Friedl, M., Fuss, A., Ge, Z., Heikinheimo, M., Huitu, K., Maji, R., Mancuso, M., Pagnanini, L., Petricca, F., Pirro, S., Pröbst, F., Profeta, G., Puiu, A., Reindl, F., Schäffner, K., Schieck, J., Schmiedmayer, D., Schwertner, C., Stahlberg, M., Stendahl, A., Wagner, F., Yue, S., Zema, V., Zhu, Y., and Pandola, L.
- Published
- 2022
- Full Text
- View/download PDF
30. Probing spin-dependent dark matter interactions with 6Li: CRESST Collaboration
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Angloher, G., Benato, G., Bento, A., Bertoldo, E., Bertolini, A., Breier, R., Bucci, C., Canonica, L., D’Addabbo, A., Di Lorenzo, S., Einfalt, L., Erb, A., Feilitzsch, F. v., Ferreiro Iachellini, N., Fichtinger, S., Fuchs, D., Fuss, A., Garai, A., Ghete, V. M., Gorla, P., Gupta, S., Hauff, D., Ješkovský, M., Jochum, J., Kaznacheeva, M., Kinast, A., Kluck, H., Kraus, H., Langenkämper, A., Mancuso, M., Marini, L., Mokina, V., Nilima, A., Olmi, M., Ortmann, T., Pagliarone, C., Palušová, V., Pattavina, L., Petricca, F., Potzel, W., Povinec, P., Pröbst, F., Pucci, F., Reindl , F., Rothe, J., Schäffner, K., Schieck, J., Schmiedmayer, D., Schönert, S., Schwertner, C., Stahlberg, M., Stodolsky, L., Strandhagen, C., Strauss, R., Usherov, I., Wagner, F., Willers, M., and Zema, V.
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- 2022
- Full Text
- View/download PDF
31. Geant4 simulations of the influence of contamination and roughness of the detector surface on background spectra in CRESST
- Author
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Grüner, Christoph, primary, Angloher, G., additional, Banik, S., additional, Benato, G., additional, Bento, A., additional, Bertolini, A., additional, Breier, R., additional, Bucci, C., additional, Burkhart, J., additional, Canonica, L., additional, D'Addabbo, A., additional, Di Lorenzo, S., additional, Einfalt, L., additional, Erb, A., additional, v. Feilitzsch, F., additional, Fichtinger, S., additional, Fuchs, D., additional, Garai, A., additional, Ghete, V.M., additional, Gorla, P., additional, Guillaumon, P.V., additional, Gupta, S. K., additional, Hauff, D., additional, Ješkovský, M., additional, Jochum, J., additional, Kaznacheeva, M., additional, Kinast, A., additional, Kluck, H., additional, Kraus, H., additional, Kuckuk, S., additional, Langenkämper, A., additional, Mancuso, M., additional, Marini, L., additional, Mauri, B., additional, Meyer, L., additional, Mokina, Valentyna, additional, Olmi, M., additional, Ortmann, T., additional, Pagliarone, C. E., additional, Pattavina, L., additional, Petricca, F., additional, Potzel, W., additional, Povinec, P., additional, Pröbst, F., additional, Pucci, F., additional, Reindl, F., additional, Rothe, J., additional, Schäffner, K., additional, Schieck, J., additional, Schönert, S., additional, Schwertner, C., additional, Stahlberg, M., additional, Stodolsky, L., additional, Strandhagen, C., additional, Strauss, R., additional, Usherov, I., additional, Wagner, F., additional, Willers, M., additional, and Zema, V., additional
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- 2024
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32. Comment on 'Universal Distribution of Interearthquake Times'
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Astrom, J., Di Stefano, P. C. F., Probst, F., Stodolsky, L., and Timonen, J.
- Subjects
Physics - Geophysics ,Condensed Matter - Materials Science ,Physics - General Physics - Abstract
We note the striking similarity between earthquake and CRESST microfracture data for waiting times., Comment: One page one figure
- Published
- 2006
33. Cryogenic characterization of a LiAlO2 crystal and new results on spin-dependent dark matter interactions with ordinary matter: CRESST Collaboration
- Author
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Abdelhameed, A. H., Angloher, G., Bauer, P., Bento, A., Bertoldo, E., Breier, R., Bucci, C., Canonica, L., D’Addabbo, A., Di Lorenzo, S., Erb, A., Feilitzsch, F. V., Iachellini, N. Ferreiro, Fichtinger, S., Fuchs, D., Fuss, A., Ghete, V. M., Garai, A., Gorla, P., Hauff, D., Ješkovský, M., Jochum, J., Kaizer, J., Kaznacheeva, M., Kinast, A., Kluck, H., Kraus, H., Langenkämper, A., Mancuso, M., Mokina, V., Mondragon, E., Olmi, M., Ortmann, T., Pagliarone, C., Palušová, V., Pattavina, L., Petricca, F., Potzel, W., Povinec, P., Pröbst, F., Reindl, F., Rothe, J., Schäffner, K., Schieck, J., Schipperges, V., Schmiedmayer, D., Schönert, S., Schwertner, C., Stahlberg, M., Stodolsky, L., Strandhagen, C., Strauss, R., Usherov, I., Wagner, F., Willers, M., Zema, V., Zeman, J., Brützam, M., and Ganschow, S.
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- 2020
- Full Text
- View/download PDF
34. TES-Based Light Detectors for the CRESST Direct Dark Matter Search
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Rothe, J., Angloher, G., Bauer, P., Bento, A., Bucci, C., Canonica, L., D’Addabbo, A., Defay, X., Erb, A., Feilitzsch, F. v., Ferreiro Iachellini, N., Gorla, P., Gütlein, A., Hauff, D., Jochum, J., Kiefer, M., Kluck, H., Kraus, H., Lanfranchi, J.-C., Langenkämper, A., Loebell, J., Mancuso, M., Mondragon, E., Münster, A., Pagliarone, C., Petricca, F., Potzel, W., Pröbst, F., Puig, R., Reindl, F., Schäffner, K., Schieck, J., Schipperges, V., Schönert, S., Seidel, W., Stahlberg, M., Stodolsky, L., Strandhagen, C., Strauss, R., Tanzke, A., Trinh Thi, H. H., Türkoğlu, C., Ulrich, A., Usherov, I., Wawoczny, S., Willers, M., and Wüstrich, M.
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- 2018
- Full Text
- View/download PDF
35. A NaI-Based Cryogenic Scintillating Calorimeter: Results from a COSINUS Prototype Detector
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Schäffner, K., Angloher, G., Carniti, P., Cassina, L., Gironi, L., Gotti, C., Gütlein, A., Mancuso, M., Di Marco, N., Pagnanini, L., Pessina, G., Petricca, F., Pirro, S., Pröbst, F., Reindl, F., Puig, R., Schieck, J., and Seidel, W.
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- 2018
- Full Text
- View/download PDF
36. A Low Nuclear Recoil Energy Threshold for Dark Matter Search with CRESST-III Detectors
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Mancuso, M., Angloher, G., Bauer, P., Bento, A., Bucci, C., Canonica, L., D’Addabbo, A., Defay, X., Erb, A., von Feilitzsch, Franz, Ferreiro Iachellini, N., Gorla, P., Gütlein, A., Hauff, D., Jochum, J., Kiefer, M., Kluck, H., Kraus, H., Lanfranchi, J. C., Langenkämper, A., Loebell, J., Mondragon, E., Münster, A., Pagliarone, C., Petricca, F., Potzel, W., Pröbst, F., Puig, R., Reindl, F., Rothe, J., Schäffner, K., Schieck, J., Schipperges, V., Schönert, S., Seidel, W., Stahlberg, M., Stodolsky, L., Strandhagen, C., Strauss, R., Tanzke, A., Thi, H. H. Trinh, Türkoglu, C., Uffinger, M., Ulrich, A., Usherov, I., Wawoczny, S., Willers, M., and Wüstrich, M.
- Published
- 2018
- Full Text
- View/download PDF
37. Exploring coherent elastic neutrino-nucleus scattering of reactor neutrinos with the NUCLEUS experiment
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Goupy, Chloé, primary, Abele, H., additional, Angloher, G., additional, Bento, A., additional, Canonica, Lucia, additional, Cappella, F., additional, Cardani, Laura, additional, Casali, N., additional, Cerulli, R., additional, Colantoni, I., additional, Cruciani, Angelo, additional, del Castello, G., additional, del Gallo Roccagiovine, M., additional, Doblhammer, A., additional, Dorer, S., additional, Erhart, A., additional, Friendl, M., additional, Garai, A., additional, Ghete, V. M., additional, Hauff, D., additional, Jeanneau, F., additional, Jericha, E., additional, Kaznacheeva, Margarita, additional, Kinast, Angelina, additional, Kluck, Holger, additional, Langenkämper, Alexander, additional, Lasserre, Thierry, additional, Lhuillier, D., additional, Mancuso, M., additional, Mauri, B., additional, Mazzolari, Andrea, additional, Mazzucato, E., additional, Neyrial, H., additional, Nones, C., additional, Oberauer, L., additional, Ortmann, T., additional, Pattavina, Luca, additional, Peters, L., additional, Petricca, Federica, additional, Potzel, Walter, additional, Pröbst, F., additional, Pucci, F., additional, Riendl, F., additional, Rogly, R., additional, Romagnoni, M., additional, Rothe, J., additional, Schermer, Nicole, additional, Schieck, J., additional, Schönert, S., additional, Schwertner, C., additional, Scola, L., additional, Soum Sidikov, G., additional, Stodolsky, L., additional, Strauss, R., additional, Tamisari, M., additional, Tomei, Claudia, additional, Vignati, M., additional, Vivier, M., additional, Wagner, V., additional, and Wex, A., additional
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- 2023
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- View/download PDF
38. Latest observations on the low energy excess in CRESST-III
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Angloher, G., primary, Banik, S., additional, Benato, Giovanni, additional, Bento, A., additional, Bertolini, Andrea, additional, Breier, Robert, additional, Bucci, Carlo, additional, Canonica, Lucia, additional, D'Addabbo, Antonio, additional, Di Lorenzo, S., additional, Einfalt, Leonie, additional, Erb, Anna, additional, von Feilitzsch, F., additional, Ferreiro Iachellini, Nahuel, additional, Fichtinger, S., additional, Fuchs, Dominik, additional, Fuss, Alexander, additional, Garai, Abhijit, additional, Ghete, V. M., additional, Gerster, S., additional, Gorla, Paolo, additional, Guillaumon, P. V., additional, Gupta, S., additional, Hauff, D., additional, Ješkovský, Miroslav, additional, Jochum, Josef, additional, Kaznacheeva, Margarita, additional, Kinast, Angelina, additional, Kluck, Holger, additional, Kraus, Hans, additional, Langenkämper, Alexander, additional, Mancuso, Michele, additional, Marini, Laura, additional, Meyer, L., additional, Mokina, Valentyna, additional, Nilima, Athoy, additional, Olmi, M., additional, Ortmann, T., additional, Pagliarone, Carmine Elvezio, additional, Pattavina, Luca, additional, Petricca, Federica, additional, Potzel, Walter, additional, Povinec, Pavel, additional, Pröbst, F., additional, Pucci, F., additional, Reindl, Florian, additional, Rothe, Johannes, additional, Schäffner, Karoline, additional, Schieck, Jochen, additional, Schmiedmayer, D., additional, Schönert, S., additional, Schwertner, C., additional, Stahlberg, Martin, additional, Stodolsky, Leo, additional, Strandhagen, Christian, additional, Strauss, R., additional, Usherov, I., additional, Wagner, F., additional, Willers, Michael, additional, and Zema, Vanessa, additional
- Published
- 2023
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- View/download PDF
39. A low-threshold diamond cryogenic detector for sub-GeV dark matter searches
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Abdelhameed, A, Angloher, G, Bento, A, Bertoldo, E, Bertolini, A, Canonica, L, Iachellini, N, Fuchs, D, Garai, A, Hauff, D, Nilima, A, Mancuso, M, Petricca, F, Pröbst, F, Pucci, F, Rothe, J, Abdelhameed AH, Angloher G, Bento A, Bertoldo E, Bertolini A, Canonica L, Iachellini NF, Fuchs D, Garai A, Hauff D, Nilima A, Mancuso M, Petricca F, Pröbst F, Pucci F, Rothe J, Abdelhameed, A, Angloher, G, Bento, A, Bertoldo, E, Bertolini, A, Canonica, L, Iachellini, N, Fuchs, D, Garai, A, Hauff, D, Nilima, A, Mancuso, M, Petricca, F, Pröbst, F, Pucci, F, Rothe, J, Abdelhameed AH, Angloher G, Bento A, Bertoldo E, Bertolini A, Canonica L, Iachellini NF, Fuchs D, Garai A, Hauff D, Nilima A, Mancuso M, Petricca F, Pröbst F, Pucci F, and Rothe J
- Abstract
In this work we report the realization of the first low-threshold cryogenic detector that uses diamond as absorber for astroparticle physics applications. We tested two 0.175 g CVD diamond samples, each instrumented with a W-TES. The sensors showed transitions at about 25 mK. We present the performance of the diamond detectors and we highlight the best performing one, where we obtained an energy threshold as low as 16.8 eV. This promising result lays the foundation for the use of diamond for different fields of applications where low threshold and excellent energy resolution are required, as i.e. light dark matter searches and BSM physics with coherent elastic neutrino nucleus scattering.
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- 2022
40. Exploring CEνNS with NUCLEUS at the Chooz nuclear power plant: NUCLEUS Collaboration
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Angloher, G., Ardellier-Desages, F., Bento, A., Canonica, L., Erhart, A., Ferreiro, N., Friedl, M., Ghete, V. M., Hauff, D., Kluck, H., Langenkämper, A., Lasserre, T., Lhuillier, D., Kinast, A., Mancuso, M., Rubiales, J. Molina, Mondragón, E., Munch, G., Nones, C., Oberauer, L., Onillon, A., Ortmann, T., Pattavina, L., Petricca, F., Potzel, W., Pröbst, F., Reindl, F., Rothe, J., Schieck, J., Schönert, S., Schwertner, C., Scola, L., Stodolsky, L., Strauss, R., Vivier, M., Wagner, V., and Zolotarova, A.
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- 2019
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- View/download PDF
41. Erratum to: Geant4-based electromagnetic background model for the CRESST dark matter experiment
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Abdelhameed, A. H., Angloher, G., Bauer, P., Bento, A., Bertoldo, E., Breier, R., Bucci, C., Canonica, L., D’Addabbo, A., Lorenzo, S. Di, Erb, A., Feilitzsch, F. v., Iachellini, N. Ferreiro, Fichtinger, S., Fuss, A., Gorla, P., Hauff, D., Jes̆kovský, M., Jochum, J., Kaizer, J., Kinast, A., Kluck, H., Kraus, H., Langenkämper, A., Mancuso, M., Mokina, V., Mondragón, E., Olmi, M., Ortmann, T., Pagliarone, C., Palus̆ová, V., Pattavina, L., Petricca, F., Potzel, W., Povinec, P., Pröbst, F., Reindl, F., Rothe, J., Schäffner, K., Schieck, J., Schipperges, V., Schmiedmayer, D., Schönert, S., Schwertner, C., Stahlberg, M., Stodolsky, L., Strandhagen, C., Strauss, R., Türkoğlu, C., Usherov, I., Willers, M., Zema, V., and Zeman, J.
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- 2019
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- View/download PDF
42. Geant4-based electromagnetic background model for the CRESST dark matter experiment
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Abdelhameed, A. H., Angloher, G., Bauer, P., Bento, A., Bertoldo, E., Breier, R., Bucci, C., Canonica, L., D’Addabbo, A., Lorenzo, S. Di, Erb, A., Feilitzsch, F. v., Iachellini, N. Ferreiro, Fichtinger, S., Fuss, A., Gorla, P., Hauff, D., Jes̆kovský, M., Jochum, J., Kaizer, J., Kinast, A., Kluck, H., Kraus, H., Langenkämper, A., Mancuso, M., Mokina, V., Mondragón, E., Olmi, M., Ortmann, T., Pagliarone, C., Palus̆ová, V., Pattavina, L., Petricca, F., Potzel, W., Povinec, P., Pröbst, F., Reindl, F., Rothe, J., Schäffner, K., Schieck, J., Schipperges, V., Schmiedmayer, D., Schönert, S., Schwertner, C., Stahlberg, M., Stodolsky, L., Strandhagen, C., Strauss, R., Türkoğlu, C., Usherov, I., Willers, M., Zema, V., and Zeman, J.
- Published
- 2019
- Full Text
- View/download PDF
43. First results on sub-GeV spin-dependent dark matter interactions with 7Li
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Abdelhameed, A. H., Angloher, G., Bauer, P., Bento, A., Bertoldo, E., Bucci, C., Canonica, L., D’Addabbo, A., Defay, X., Di Lorenzo, S., Erb, A., Feilitzsch, F. v., Iachellini, N. Ferreiro, Fichtinger, S., Fuss, A., Gorla, P., Hauff, D., Jochum, J., Kinast, A., Kluck, H., Kraus, H., Langenkämper, A., Mancuso, M., Mokina, V., Mondragon, E., Münster, A., Olmi, M., Ortmann, T., Pagliarone, C., Pattavina, L., Petricca, F., Potzel, W., Pröbst, F., Reindl, F., Rothe, J., Schäffner, K., Schieck, J., Schipperges, V., Schmiedmayer, D., Schönert, S., Schwertner, C., Stahlberg, M., Stodolsky, L., Strandhagen, C., Strauss, R., Türkoğlu, C., Usherov, I., Willers, M., Zema, V., (THE CRESST Collaboration), Chapellier, M., Giuliani, A., Nones, C., Poda, D. V., Shlegel, V. N., Velázquez, M., and Zolotarova, A. S.
- Published
- 2019
- Full Text
- View/download PDF
44. Results on sub-GeV Dark Matter from a 10 eV Threshold CRESST-III Silicon Detector
- Author
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Angloher, G, Banik, S, Benato, G, Bento, A, Bertolini, A, Breier, R, Bucci, C, Burkhart, J, Canonica, L, D'Addabbo, A, Di Lorenzo, S, Einfalt, L, Erb, A, Feilitzsch, F, Iachellini, N, Fichtinger, S, Fuchs, D, Fuss, A, Garai, A, Ghete, V, Gerster, S, Gorla, P, Guillaumon, P, Gupta, S, Hauff, D, Jevkovsky, M, Jochum, J, Kaznacheeva, M, Kinast, A, Kluck, H, Kraus, H, Langenkämper, A, Mancuso, M, Marini, L, Meyer, L, Mokina, V, Nilima, A, Olmi, M, Ortmann, T, Pagliarone, C, Pattavina, L, Petricca, F, Potzel, W, Povinec, P, Pröbst, F, Pucci, F, Reindl, F, Rothe, J, Schäffner, K, Schieck, J, Schmiedmayer, D, Schönert, S, Schwertner, C, Stahlberg, M, Stodolsky, L, Strandhagen, C, Strauss, R, Usherov, I, Wagner, F, Willers, M, Zema, V, Feilitzsch, FV, Iachellini, NF, Ghete, VM, Guillaumon, PV, Angloher, G, Banik, S, Benato, G, Bento, A, Bertolini, A, Breier, R, Bucci, C, Burkhart, J, Canonica, L, D'Addabbo, A, Di Lorenzo, S, Einfalt, L, Erb, A, Feilitzsch, F, Iachellini, N, Fichtinger, S, Fuchs, D, Fuss, A, Garai, A, Ghete, V, Gerster, S, Gorla, P, Guillaumon, P, Gupta, S, Hauff, D, Jevkovsky, M, Jochum, J, Kaznacheeva, M, Kinast, A, Kluck, H, Kraus, H, Langenkämper, A, Mancuso, M, Marini, L, Meyer, L, Mokina, V, Nilima, A, Olmi, M, Ortmann, T, Pagliarone, C, Pattavina, L, Petricca, F, Potzel, W, Povinec, P, Pröbst, F, Pucci, F, Reindl, F, Rothe, J, Schäffner, K, Schieck, J, Schmiedmayer, D, Schönert, S, Schwertner, C, Stahlberg, M, Stodolsky, L, Strandhagen, C, Strauss, R, Usherov, I, Wagner, F, Willers, M, Zema, V, Feilitzsch, FV, Iachellini, NF, Ghete, VM, and Guillaumon, PV
- Abstract
We present limits on the spin-independent interaction cross section of dark matter particles with silicon nuclei, derived from data taken with a cryogenic calorimeter with 0.35 g target mass operated in the CRESST-III experiment. A baseline nuclear recoil energy resolution of (1.36 ± 0.05) eVnr, currently the lowest reported for macroscopic particle detectors, and a corresponding energy thresh-old of (10.0 ± 0.2) eVnr have been achieved, improving the sensitivity to light dark matter particles with masses below 160 MeV/c2 by a factor of up to 20 compared to previous results. We characterize the observed low energy excess, and we exclude noise triggers and radioactive contaminations on the crystal surfaces as dominant contributions.
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- 2023
45. Secular Equilibrium Assessment in a CaWO4 Target Crystal from the Dark Matter Experiment CRESST using Bayesian Likelihood Normalisation
- Author
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Angloher, G, Banik, S, Benato, G, Bento, A, Bertolini, A, Breier, R, Bucci, C, Burkhart, J, Canonica, L, D'Addabbo, A, Di Lorenzo, S, Einfalt, L, Erb, A, Feilitzsch, F, Iachellini, N, Fichtinger, S, Fuchs, D, Fuss, A, Garai, A, Ghete, V, Gorla, P, Gupta, S, Hauff, D, Jeskovsky, M, Jochum, J, Kaznacheeva, M, Kinast, A, Kluck, H, Kraus, H, Langenkämper, A, Mancuso, M, Marini, L, Mokina, V, Nilima, A, Olmi, M, Ortmann, T, Pagliarone, C, Pattavina, L, Petricca, F, Potzel, W, Povinec, P, Pröbst, F, Pucci, F, Reindl, F, Rothe, J, Schäffner, K, Schieck, J, Schmiedmayer, D, Schönert, S, Schwertner, C, Stahlberg, M, Stodolsky, L, Strandhagen, C, Strauss, R, Usherov, I, Wagner, F, Willers, M, Zema, V, Ferella, F, Laubenstein, M, Nisi, S, Feilitzsch, FV, Iachellini, NF, Ghete, VM, Angloher, G, Banik, S, Benato, G, Bento, A, Bertolini, A, Breier, R, Bucci, C, Burkhart, J, Canonica, L, D'Addabbo, A, Di Lorenzo, S, Einfalt, L, Erb, A, Feilitzsch, F, Iachellini, N, Fichtinger, S, Fuchs, D, Fuss, A, Garai, A, Ghete, V, Gorla, P, Gupta, S, Hauff, D, Jeskovsky, M, Jochum, J, Kaznacheeva, M, Kinast, A, Kluck, H, Kraus, H, Langenkämper, A, Mancuso, M, Marini, L, Mokina, V, Nilima, A, Olmi, M, Ortmann, T, Pagliarone, C, Pattavina, L, Petricca, F, Potzel, W, Povinec, P, Pröbst, F, Pucci, F, Reindl, F, Rothe, J, Schäffner, K, Schieck, J, Schmiedmayer, D, Schönert, S, Schwertner, C, Stahlberg, M, Stodolsky, L, Strandhagen, C, Strauss, R, Usherov, I, Wagner, F, Willers, M, Zema, V, Ferella, F, Laubenstein, M, Nisi, S, Feilitzsch, FV, Iachellini, NF, and Ghete, VM
- Abstract
CRESST is a leading direct detection sub-GeVc−2 dark matter experiment. During its second phase, cryogenic bolometers were used to detect nuclear recoils off the CaWO4 target crystal nuclei. The previously established electromagnetic background model relies on Secular Equilibrium (SE) assumptions. In this work, a validation of SE is attempted by comparing two likelihood-based normalisation results using a recently developed spectral template normalisation method based on Bayesian likelihood. Albeit we find deviations from SE in some cases we conclude that these deviations are artefacts of the fit and that the assumptions of SE is physically meaningful.
- Published
- 2023
46. Light Dark Matter Search Using a Diamond Cryogenic Detector
- Author
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CRESST Collaboration, Angloher, G., Banik, S., Benato, G., Bento, A., Bertolini, A., Breier, R., Bucci, C., Burkhart, J., Canonica, L., D'Addabbo, A., Di Lorenzo, S., Einfalt, L., Erb, A., Feilitzsch, F. v., Fichtinger, S., Fuchs, D., Garai, A., Ghete, V. M., Gorla, P., Guillaumon, P. V., Gupta, S., Hauff, D., Ješkovský, M., Jochum, J., Kaznacheeva, M., Kinast, A., Kluck, H., Kraus, H., Kuckuk, S., Langenkämper, A., Mancuso, M., Marini, L., Mauri, B., Meyer, L., Mokina, V., Olmi, M., Ortmann, T., Pagliarone, C., Pattavina, L., Petricca, F., Potzel, W., Povinec, P., Pröbst, F., Pucci, F., Reindl, F., Rothe, J., Schäffner, K., Schieck, J., Schönert, S., Schwertner, C., Stahlberg, M., Stodolsky, L., Strandhagen, C., Strauss, R., Usherov, I., Wagner, F., Willers, M., Zema, V., CRESST Collaboration, Angloher, G., Banik, S., Benato, G., Bento, A., Bertolini, A., Breier, R., Bucci, C., Burkhart, J., Canonica, L., D'Addabbo, A., Di Lorenzo, S., Einfalt, L., Erb, A., Feilitzsch, F. v., Fichtinger, S., Fuchs, D., Garai, A., Ghete, V. M., Gorla, P., Guillaumon, P. V., Gupta, S., Hauff, D., Ješkovský, M., Jochum, J., Kaznacheeva, M., Kinast, A., Kluck, H., Kraus, H., Kuckuk, S., Langenkämper, A., Mancuso, M., Marini, L., Mauri, B., Meyer, L., Mokina, V., Olmi, M., Ortmann, T., Pagliarone, C., Pattavina, L., Petricca, F., Potzel, W., Povinec, P., Pröbst, F., Pucci, F., Reindl, F., Rothe, J., Schäffner, K., Schieck, J., Schönert, S., Schwertner, C., Stahlberg, M., Stodolsky, L., Strandhagen, C., Strauss, R., Usherov, I., Wagner, F., Willers, M., and Zema, V.
- Abstract
Diamond operated as a cryogenic calorimeter is an excellent target for direct detection of low-mass dark matter candidates. Following the realization of the first low-threshold cryogenic detector that uses diamond as absorber for astroparticle physics applications, we now present the resulting exclusion limits on the elastic spin-independent interaction cross-section of dark matter with diamond. We measured two 0.175 g CVD (Chemical Vapor Deposition) diamond samples, each instrumented with a W-TES. Thanks to the energy threshold of just 16.8 eV of one of the two detectors, we set exclusion limits on the elastic spin-independent interaction of dark matter particles with carbon nuclei down to dark matter masses as low as 0.122 GeV/c2. This work shows the scientific potential of cryogenic detectors made from diamond and lays the foundation for the use of this material as target for direct detection dark matter experiments., Comment: 6 pages, 6 figures
- Published
- 2023
47. Particle discrimination in a NaI crystal using the COSINUS remote TES design
- Author
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COSINUS Collaboration, Angloher, G., Bharadwaj, M. R., Dafinei, I., Di Marco, N., Einfalt, L., Ferroni, F., Fichtinger, S., Filipponi, A., Frank, T., Friedl, M., Fuss, A., Ge, Z., Heikinheimo, M., Hughes, M. N., Huitu, K., Kellermann, M., Maji, R., Mancuso, M., Pagnanini, L., Petricca, F., Pirro, S., Pröbst, F., Profeta, G., Puiu, A., Reindl, F., Schäffner, K., Schieck, J., Schmiedmayer, D., Schwertner, C., Stahlberg, M., Stendhal, A., Stukel, M., Tresca, C., Wagner, F., Yue, S., Zema, V., Zhu, Y., Bento, A., Canonica, L., Garai, A., COSINUS Collaboration, Angloher, G., Bharadwaj, M. R., Dafinei, I., Di Marco, N., Einfalt, L., Ferroni, F., Fichtinger, S., Filipponi, A., Frank, T., Friedl, M., Fuss, A., Ge, Z., Heikinheimo, M., Hughes, M. N., Huitu, K., Kellermann, M., Maji, R., Mancuso, M., Pagnanini, L., Petricca, F., Pirro, S., Pröbst, F., Profeta, G., Puiu, A., Reindl, F., Schäffner, K., Schieck, J., Schmiedmayer, D., Schwertner, C., Stahlberg, M., Stendhal, A., Stukel, M., Tresca, C., Wagner, F., Yue, S., Zema, V., Zhu, Y., Bento, A., Canonica, L., and Garai, A.
- Abstract
The COSINUS direct dark matter experiment situated at Laboratori Nazionali del Gran Sasso in Italy is set to investigate the nature of the annually modulating signal detected by the DAMA/LIBRA experiment. COSINUS has already demonstrated that sodium iodide crystals can be operated at mK temperature as cryogenic scintillating calorimeters using transition edge sensors, despite the complication of handling a hygroscopic and low melting point material. With results from a new COSINUS prototype, we show that particle discrimination on an event-by-event basis in NaI is feasible using the dual-channel readout of both phonons and scintillation light. The detector was mounted in the novel remoTES design and operated in an above-ground facility for 9.06 g$\cdot$d of exposure. With a 3.7 g NaI crystal, e$^-$/$\gamma$ events could be clearly distinguished from nuclear recoils down to the nuclear recoil energy threshold of 15 keV., Comment: 7 pages, 9 figures
- Published
- 2023
48. Secular equilibrium assessment in a CaWO4 target crystal from the dark matter experiment CRESST using Bayesian likelihood normalisation
- Author
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Angloher, G., primary, Banik, S., additional, Benato, G., additional, Bento, A., additional, Bertolini, A., additional, Breier, R., additional, Bucci, C., additional, Burkhart, J., additional, Canonica, L., additional, D’Addabbo, A., additional, Di Lorenzo, S., additional, Einfalt, L., additional, Erb, A., additional, Feilitzsch, F.v., additional, Ferreiro Iachellini, N., additional, Fichtinger, S., additional, Fuchs, D., additional, Fuss, A., additional, Garai, A., additional, Ghete, V.M., additional, Gorla, P., additional, Gupta, S., additional, Hauff, D., additional, Ješkovský, M., additional, Jochum, J., additional, Kaznacheeva, M., additional, Kinast, A., additional, Kluck, H., additional, Kraus, H., additional, Langenkämper, A., additional, Mancuso, M., additional, Marini, L., additional, Mokina, V., additional, Nilima, A., additional, Olmi, M., additional, Ortmann, T., additional, Pagliarone, C., additional, Pattavina, L., additional, Petricca, F., additional, Potzel, W., additional, Povinec, P., additional, Pröbst, F., additional, Pucci, F., additional, Reindl, F., additional, Rothe, J., additional, Schäffner, K., additional, Schieck, J., additional, Schmiedmayer, D., additional, Schönert, S., additional, Schwertner, C., additional, Stahlberg, M., additional, Stodolsky, L., additional, Strandhagen, C., additional, Strauss, R., additional, Usherov, I., additional, Wagner, F., additional, Willers, M., additional, Zema, V., additional, Ferella, F., additional, Laubenstein, M., additional, and Nisi, S., additional
- Published
- 2023
- Full Text
- View/download PDF
49. The ν -cleus experiment: a gram-scale fiducial-volume cryogenic detector for the first detection of coherent neutrino–nucleus scattering
- Author
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Strauss, R., Rothe, J., Angloher, G., Bento, A., Gütlein, A., Hauff, D., Kluck, H., Mancuso, M., Oberauer, L., Petricca, F., Pröbst, F., Schieck, J., Schönert, S., Seidel, W., and Stodolsky, L.
- Published
- 2017
- Full Text
- View/download PDF
50. Dark-photon search using data from CRESST-II Phase 2
- Author
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Angloher, G., Bauer, P., Bento, A., Bucci, C., Canonica, L., Defay, X., Erb, A., Feilitzsch, F. v., Iachellini, N. Ferreiro, Gorla, P., Gütlein, A., Hauff, D., Jochum, J., Kiefer, M., Kluck, H., Kraus, H., Lanfranchi, J.-C., Loebell, J., Mancuso, M., Münster, A., Pagliarone, C., Petricca, F., Potzel, W., Pröbst, F., Puig, R., Reindl, F., Schäffner, K., Schieck, J., Schönert, S., Seidel, W., Stodolsky, L., Strandhagen, C., Strauss, R., Tanzke, A., Thi, H. H. Trinh, Türkoǧlu, C., Uffinger, M., Ulrich, A., Usherov, I., Wawoczny, S., Willers, M., Wüstrich, M., and Zöller, A.
- Published
- 2017
- Full Text
- View/download PDF
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