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'$\mathbf{{\textit K^-}{\textit p}{\textit p}}$', a ${\overline{K}}$-Meson Nuclear Bound State, Observed in $^{3}{\rm He}({K^-}, {\Lambda} p)n$ Reactions

Authors :
collaboration, J-PARC E15
Ajimura, S.
Asano, H.
Beer, G.
Berucci, C.
Bhang, H.
Bragadireanu, M.
Buehler, P.
Busso, L.
Cargnelli, M.
Choi, S.
Curceanu, C.
Enomoto, S.
Fujioka, H.
Fujiwara, Y.
Fukuda, T.
Guaraldo, C.
Hashimoto, T.
Hayano, R. S.
Hiraiwa, T.
Iio, M.
Iliescu, M.
Inoue, K.
Ishiguro, Y.
Ishikawa, T.
Ishimoto, S.
Itahashi, K.
Iwasaki, M.
Kanno, K.
Kato, K.
Kato, Y.
Kawasaki, S.
Kienle, P.
Kou, H.
Ma, Y.
Marton, J.
Matsuda, Y.
Mizoi, Y.
Morra, O.
Nagae, T.
Noumi, H.
Ohnishi, H.
Okada, S.
Outa, H.
Piscicchia, K.
Sada, Y.
Sakaguchi, A.
Sakuma, F.
Sato, M.
Scordo, A.
Sekimoto, M.
Shi, H.
Shirotori, K.
Sirghi, D.
Sirghi, F.
Suzuki, K.
Suzuki, S.
Suzuki, T.
Tanida, K.
Tatsuno, H.
Tokuda, M.
Tomono, D.
Toyoda, A.
Tsukada, K.
Doce, O. Vazquez
Widmann, E.
Yamaga, T.
Yamazaki, T.
Zhang, Q.
Zmeskal, J.
Publication Year :
2018

Abstract

We observed a distinct peak in the $\Lambda p$ invariant mass spectrum of $^{3}{\rm He}(K^-, \, \Lambda p)n$, well below the mass threshold of $m_K + 2 m_p$. By selecting a relatively large momentum-transfer region $q = 350 \sim 650$ MeV/$c$, one can clearly separate the peak from the quasi-free process, $\overline{K}N \rightarrow \overline{K}N$ followed by the non-resonant absorption by the two spectator-nucleons $\overline{K}NN \rightarrow \Lambda N $. We found that the simplest fit to the observed peak gives us a Breit-Wigner pole position at $B_{\rm {\it Kpp}} = 47 \pm 3 \, (stat.) \,^{+3}_{-6} \,(sys.)$ MeV having a width $\Gamma_{\rm {\it Kpp}} = 115 \pm 7 \, (stat.) \,^{+10}_{-9} \,(sys.)$ MeV, and the $S$-wave Gaussian reaction form-factor parameter $Q_{\rm {\it Kpp}} = 381 \pm 14 \, (stat.)\,^{+57}_{-0} \,(sys.)$ MeV/$c$, as a new form of the nuclear bound system with strangeness -- "$K^-pp$".<br />Comment: 17 pages, 4 figures

Subjects

Subjects :
Nuclear Experiment

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.1805.12275
Document Type :
Working Paper