The study of $\gamma\gamma\to\gamma\psi(2S)$ at Belle

X. L. Wang,P. K. Behera,S. Watanuki, M. Bračko, D. Liventsev, R. Kulasiri,M. Takizawa, V. Chekelian,M. Masuda, S. Uehara,S. Al Said,S. Cunliffe, K. Hayasaka,T. Matsuda, S. Das, E. Won, D. Matvienko,S.-H. Park,Y.-K. Kim,N. Rout,K. H. Kang,B. G. Cheon,H. Park,A. Bobrov, T. Podobnik,G. B. Mohanty,K. Cho, P. Wang,V. Zhukova,A. Giri,E. Waheed, B. Golob,T. Iijima,A. Ishikawa,M. Iwasaki, C. Hadjivasiliou,A. Bożek,Jyoti Prakash Biswal,D. Y. Kim, J. Libby,M. Merola, K. Inami, M. Sumihama, C. MacQueen,J. Li,L. Šantelj,Rocky Bala Garg,T. Konno, O. Werbycka, R. Pestotnik,J. Kahn,Deepak Kumar Sahoo,M. Kumar,H. Hayashii,M. T. Prim,L. E. Piilonen, C. Z. Yuan, S. Korpar,A. Sokolov,B. G. Fulsom, P. Oskin,G. De Nardo,S. Ogawa,K. Nishimura,T. Aushev,V. Popov, A. Rostomyan,M. T. Hedges, Baofeng Gao, C. H. Kim, G. Bonvicini, R. Mizuk,F. Di Capua, E. Solovieva, P. Kodyš,W. J. Zhu, V. Babu, G. Varner,T. Uglov, Hua Ye, C. Joo,W. Yan,Z. Natkaniec, V. Aulchenko,M. E. Sevior,D. M. Asner,L. Nayak,M. Mrvar,S. Uno,Hiroyuki Ono, H. Atmacan,I. Adachi,A. Natochii,V. Bhardwaj,V. Gaur, M. Shapkin,P. Lewis, Y. Choi, E. Prencipe,L. K. Li, D. Červenkov,T. K. Pedlar,Y.-J. Kwon,M. Watanabe, Y. Jin, T. Ferber,U. Tamponi, M. Nayak,G. Russo,R. Van Tonder,W.-S. Hou, M. Niiyama, J. H. Yin,S. C. Lee,S. Eidelman,Z. Doležal, P. Križan, B. Shwartz, R. Mussa, F. Tenchini,R. Kroeger, R. Ayad, M. Nakao, C. Schwanda,Z. S. Stottler, H. Aihara, P. Goldenzweig, S. H. Kim, T. Sanuki,V. Zhilich, M.-Z. Wang, F. Metzner, T. Bilka,C. H. Wang, J. S. Lange, A. Chen, T. Kawasaki, S. Jia, C.-L. Hsu, K. Lieret,M. C. Chang, M. Starič,I. S. Lee,N. K. Nisar, N. Gabyshev,P. Krokovny, K. Chilikin,P. Pakhlov, D. Ferlewicz,H. E. Cho,S. Paul,F. Simon, K. Senyo, M. Roehrken, T. V. Dong, S. Choudhury, P. Urquijo, S. Pardi, M. Campajola,R. Dhamija, Y. Seino,S. Patra, Z. P. Zhang, E. Kovalenko,A. Vossen,K. Kumara, K. Miyabayashi,B. Bhuyan,S. Bahinipati,Jagbir Singh, Y. Unno, R. Itoh,S. Choi,M. Iwasaki, G. Schnell,A. Sangal, A. Korobov,W. W. Jacobs, C. P. Shen,J. G. Shiu,A. Kuzmin,Xiaolong Xu,Rajeev Kumar, D. Cinabro, G. Pakhlova, S. Nishida,T. Pang,O. Hartbrich, S. Sandilya, Y. B. Li, S. B. Yang, T. Hara, K. K. Joo, A. Garmash, S. Stanič,C. Sharma, K. Lalwani, C. Kiesling,L. Li Gioi,A. Frey, Y. Onuki,Y. Usov,M. Uchida

arXiv (Cornell University)(2021)

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摘要
Using $980~\rm fb^{-1}$ of data on and around the $\Upsilon(nS)(n=1,2,3,4,5)$ resonances collected with the Belle detector at the KEKB asymmetric-energy $e^+e^-$ collider, the two-photon process $\gamma\gamma\to \gamma\psi(2S)$ is studied from $\sqrt{s} = 3.7$ to $4.2~{\rm GeV}$ for the first time. Evidence is found for a structure in the invariant mass distribution of $\gamma\psi(2S)$ at $M_1 = 3921.3\pm 2.4 \pm 1.6~{\rm MeV}/c^2$ with a width of $\Gamma_1 = 0.0\pm 5.3 \pm 2.0~{\rm MeV}$ and a significance of $4.0\sigma$ including systematic uncertainties, and another structure is seen at $M_2 = 4014.4\pm 4.1 \pm 0.5~{\rm MeV}/c^2$ with a width of $\Gamma_2 = 6\pm 16 \pm 6~{\rm MeV}$ and a global significance of $2.8\sigma$ including the look-elsewhere effect, if the mass spectrum is parametrized with the incoherent sum of two Breit-Wigner functions. The upper limits of the widths are determined to be $\Gamma_1^{\rm UL} = 11.5~{\rm MeV}$ and $\Gamma_2^{\rm UL} = 39.3~{\rm MeV}$ at 90\% confidence level. The production rates are determined to be $\Gamma_{\gamma\gamma}{\cal B}(R_1\to\gamma\psi(2S)) = 8.2\pm 2.3\pm 0.9~{\rm eV}$ assuming $(J^{PC}, |\lambda|) =(0^{++}, 0)$ and $1.6\pm 0.5\pm 0.2~{\rm eV}$ with $(2^{++}, 2)$ for the first structure and $\Gamma_{\gamma\gamma}{\cal B}(R_2\to\gamma\psi(2S)) = 5.3\pm 2.7\pm 2.5~{\rm eV}$ with $(0^{++}, 0)$ and $1.1\pm 0.5\pm 0.5~{\rm eV}$ with $(2^{++}, 2)$ for the second one. Here, the first errors are statistical and the second systematic.
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关键词
$\gamma\gamma\to\gamma\psi2s$,belle
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