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Measurement of differential cross sections for $Σ^+p$ elastic scattering in the momentum range 0.44-0.80 GeV/c

Authors :
PARC E40 Collaboration
Nanamura, T.
Miwa, K.
Ahn, J. K.
Akazawa, Y.
Aramaki, T.
Ashikaga, S.
Callier, S.
Chiga, N.
Choi, S. W.
Ekawa, H.
Evtoukhovitch, P.
Fujioka, N.
Fujita, M.
Gogami, T.
Harada, T. K.
Hasegawa, S.
Hayakawa, S. H.
Honda, R.
Hoshino, S.
Hosomi, K.
Ichikawa, M.
Ichikawa, Y.
Ieiri, M.
Ikeda, M.
Imai, K.
Ishikawa, Y.
Ishimoto, S.
Jung, W. S.
Kajikawa, S.
Kanauchi, H.
Kanda, H.
Kitaoka, T.
Kang, B. M.
Kawai, H.
Kim, S. H.
Kobayashi, K.
Koike, T.
Matsuda, K.
Matsumoto, Y.
Nagao, S.
Nagatomi, R.
Nakada, Y.
Nakagawa, M.
Nakamura, I.
Naruki, M.
Ozawa, S.
Raux, L.
Rogers, T. G.
Sakaguchi, A.
Sakao, T.
Sako, H.
Sato, S.
Shiozaki, T.
Shirotori, K.
Suzuki, K. N.
Suzuki, S.
Tabata, M.
Taille, C. d. L.
Takahashi, H.
Takahashi, T.
Takahashi, T. N.
Tamura, H.
Tanaka, M.
Tanida, K.
Tsamalaidze, Z.
Ukai, M.
Umetsu, H.
Wada, S.
Yamamoto, T. O.
Yoshida, J.
Yoshimura, K.
Publication Year :
2022
Publisher :
arXiv, 2022.

Abstract

We performed a novel $Σ^+ p$ scattering experiment at the J-PARC Hadron Experimental Facility. Approximately 2400 $Σ^+ p$ elastic scattering events were identified from $4.9 \times 10^7$ tagged $Σ^+$ particles in the $Σ^+$ momentum range 0.44 -- 0.80 GeV/$c$. The differential cross sections of the $Σ^+ p$ elastic scattering were derived with much better precision than in previous experiments. The obtained differential cross sections were approximately 2 mb/sr or less, which were not as large as those predicted by the fss2 and FSS models based on the quark cluster model in the short-range region. By performing phase-shift analyses for the obtained differential cross sections, we experimentally derived the phase shifts of the $^3 S_1$ and $^1 P_1$ channels for the first time. The phase shift of the $^3 S_1$ channel, where a large repulsive core was predicted owing to the Pauli effect between quarks, was evaluated as $20^\circ

Details

Database :
OpenAIRE
Accession number :
edsair.doi...........645f49ba228f5cb95efc2a5c370de99e
Full Text :
https://doi.org/10.48550/arxiv.2203.08393