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First Search for the $K_L \to ��^0 ��$ Decay

Authors :
Ahn, J. K.
Beckford, B.
Campbell, M.
Chen, S. H.
Choi, J. M.
Comfort, J.
Dona, K.
Farrington, M. S.
Hara, N.
Haraguchi, H.
Hsiung, Y. B.
Hutcheson, M.
Inagaki, T.
Isoe, M.
Kamiji, I.
Kim, E. J.
Kim, J. L.
Kim, H. M.
Komatsubara, T. K.
Kotera, K.
Lee, J. W.
Lim, G. Y.
Lin, C.
Lin, Q. S.
Luo, Y.
Mari, T.
Matsumura, T.
Mcfarland, D.
Miyazaki, K.
Murayama, R.
Nakagiri, K.
Nanjo, H.
Nishimiya, H.
Noichi, Y.
Nomura, T.
Nunes, T.
Ohsugi, M.
Okuno, H.
Redeker, J. C.
Sato, K.
Sato, T.
Sato, Y.
Shimizu, N.
Shimogawa, T.
Shinkawa, T.
Shinohara, S.
Shiomi, K.
Shiraishi, R.
Su, S.
Sugiyama, Y.
Suzuki, S.
Tajima, Y.
Taylor, M.
Tecchio, M.
Togawa, M.
Toyoda, T.
Tung, Y. C.
Vuong, Q. H.
Wah, Y. W.
Watanabe, H.
Yamanaka, T.
Yoshida, H. Y.
Publication Year :
2020
Publisher :
arXiv, 2020.

Abstract

We report the first search for the $K_L \to ��^0 ��$ decay, which is forbidden by Lorentz invariance, using the data from 2016 to 2018 at the J-PARC KOTO experiment. With a single event sensitivity of $(7.1\pm 0.3_{\rm stat.} \pm 1.6_{\rm syst.})\times 10^{-8}$, no candidate event was observed in the signal region. The upper limit on the branching fraction was set to be $1.7\times 10^{-7}$ at the 90\% confidence level.

Details

Database :
OpenAIRE
Accession number :
edsair.doi...........a4e1e368124e58a73a25f6b0b0114e86
Full Text :
https://doi.org/10.48550/arxiv.2006.14918