Search for lepton-flavor-violating $\tau$ decays into a lepton and a vector meson using the full Belle data sample

JHEP06 (2023) 118 Charged-lepton-flavor-violation is predicted in several new physics scenarios. We update the analysis of $\tau$ lepton decays into a light charged lepton ($\ell$ = $e^{\pm}$ or $\mu^{\pm}$) and a vector meson ($V^0$ = $\rho^0$, $\phi$, $\omega$, $K^{\ast0}$, or $\overline{K}{}^{\as...

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Hauptverfasser: Tsuzuki, N, Inami, K, Aihara, H, Atmacan, H, Ayad, R, Banerjee, Sw, Behera, P, Bennett, J, Bessner, M, Bhuyan, B, Bilka, T, Biswas, D, Bodrov, D, Borah, J, Bračko, M, Branchini, P, Browder, T. E, Budano, A, Červenkov, D, Cheon, B. G, Cho, H. E, Cho, S. -J, Cinabro, D, Das, S, De Nardo, G, De Pietro, G, Dhamija, R, Di Capua, F, Ferlewicz, D, Giri, A, Guan, Y, Han, X, Hedges, M. T, Herrmann, D, Hou, W. -S, Hsu, C. -L, Ipsita, N, Itoh, R, Kawasaki, T, Kim, D. Y, Korobov, A, Korpar, S, Kovalenko, E, Križan, P, Kumara, K, Kuzmin, A, Kwon, Y. -J, Lee, S. C, Li, L. K, Li, Y, Lieret, K, Lin, Y. -R, Martini, A, Masuda, M, Matsuoka, K, Matvienko, D, Meier, F, Miyabayashi, K, Mizuk, R, Natkaniec, Z, Natochii, A, Niiyama, M, Nisar, N. K, Ogawa, S, Pakhlova, G, Pardi, S, Pedlar, T. K, Podobnik, T, Prim, M. T, Rostomyan, A, Sandilya, S, Sangal, A, Santelj, L, Savinov, V, Schnell, G, Senyo, K, Shan, W, Shapkin, M, Shiu, J. -G, Solovieva, E, Starič, M, Takizawa, M, Tamponi, U, Tanida, K, Uchida, M, Uglov, T, Urquijo, P, Ushiroda, Y, Varner, G, Wang, D, Wang, E, Wang, M. -Z, Wang, X. L, Watanuki, S, Yabsley, B. D, Yan, W, Yang, S. B, Yook, Y, Yuan, L, Zhilich, V
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creator Tsuzuki, N
Inami, K
Aihara, H
Atmacan, H
Ayad, R
Banerjee, Sw
Behera, P
Bennett, J
Bessner, M
Bhuyan, B
Bilka, T
Biswas, D
Bodrov, D
Borah, J
Bračko, M
Branchini, P
Browder, T. E
Budano, A
Červenkov, D
Cheon, B. G
Cho, H. E
Cho, S. -J
Cinabro, D
Das, S
De Nardo, G
De Pietro, G
Dhamija, R
Di Capua, F
Ferlewicz, D
Giri, A
Guan, Y
Han, X
Hedges, M. T
Herrmann, D
Hou, W. -S
Hsu, C. -L
Ipsita, N
Itoh, R
Kawasaki, T
Kim, D. Y
Korobov, A
Korpar, S
Kovalenko, E
Križan, P
Kumara, K
Kuzmin, A
Kwon, Y. -J
Lee, S. C
Li, L. K
Li, Y
Lieret, K
Lin, Y. -R
Martini, A
Masuda, M
Matsuoka, K
Matvienko, D
Meier, F
Miyabayashi, K
Mizuk, R
Natkaniec, Z
Natochii, A
Niiyama, M
Nisar, N. K
Ogawa, S
Pakhlova, G
Pardi, S
Pedlar, T. K
Podobnik, T
Prim, M. T
Rostomyan, A
Sandilya, S
Sangal, A
Santelj, L
Savinov, V
Schnell, G
Senyo, K
Shan, W
Shapkin, M
Shiu, J. -G
Solovieva, E
Starič, M
Takizawa, M
Tamponi, U
Tanida, K
Uchida, M
Uglov, T
Urquijo, P
Ushiroda, Y
Varner, G
Wang, D
Wang, E
Wang, M. -Z
Wang, X. L
Watanuki, S
Yabsley, B. D
Yan, W
Yang, S. B
Yook, Y
Yuan, L
Zhilich, V
description JHEP06 (2023) 118 Charged-lepton-flavor-violation is predicted in several new physics scenarios. We update the analysis of $\tau$ lepton decays into a light charged lepton ($\ell$ = $e^{\pm}$ or $\mu^{\pm}$) and a vector meson ($V^0$ = $\rho^0$, $\phi$, $\omega$, $K^{\ast0}$, or $\overline{K}{}^{\ast0}$) using 980 fb$^{-1}$ of data collected with the Belle detector at the KEKB collider. No significant excess of such signal events is observed, and thus 90% credibility level upper limits are set on the $\tau \rightarrow \ell V^0$ branching fractions in the range of (1.7--$4.3) \times 10^{-8}$. These limits are improved by 30% on average from the previous results.
doi_str_mv 10.48550/arxiv.2301.03768
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E ; Budano, A ; Červenkov, D ; Cheon, B. G ; Cho, H. E ; Cho, S. -J ; Cinabro, D ; Das, S ; De Nardo, G ; De Pietro, G ; Dhamija, R ; Di Capua, F ; Ferlewicz, D ; Giri, A ; Guan, Y ; Han, X ; Hedges, M. T ; Herrmann, D ; Hou, W. -S ; Hsu, C. -L ; Ipsita, N ; Itoh, R ; Kawasaki, T ; Kim, D. Y ; Korobov, A ; Korpar, S ; Kovalenko, E ; Križan, P ; Kumara, K ; Kuzmin, A ; Kwon, Y. -J ; Lee, S. C ; Li, L. K ; Li, Y ; Lieret, K ; Lin, Y. -R ; Martini, A ; Masuda, M ; Matsuoka, K ; Matvienko, D ; Meier, F ; Miyabayashi, K ; Mizuk, R ; Natkaniec, Z ; Natochii, A ; Niiyama, M ; Nisar, N. K ; Ogawa, S ; Pakhlova, G ; Pardi, S ; Pedlar, T. K ; Podobnik, T ; Prim, M. T ; Rostomyan, A ; Sandilya, S ; Sangal, A ; Santelj, L ; Savinov, V ; Schnell, G ; Senyo, K ; Shan, W ; Shapkin, M ; Shiu, J. -G ; Solovieva, E ; Starič, M ; Takizawa, M ; Tamponi, U ; Tanida, K ; Uchida, M ; Uglov, T ; Urquijo, P ; Ushiroda, Y ; Varner, G ; Wang, D ; Wang, E ; Wang, M. -Z ; Wang, X. L ; Watanuki, S ; Yabsley, B. D ; Yan, W ; Yang, S. B ; Yook, Y ; Yuan, L ; Zhilich, V</creator><creatorcontrib>Tsuzuki, N ; Inami, K ; Aihara, H ; Atmacan, H ; Ayad, R ; Banerjee, Sw ; Behera, P ; Bennett, J ; Bessner, M ; Bhuyan, B ; Bilka, T ; Biswas, D ; Bodrov, D ; Borah, J ; Bračko, M ; Branchini, P ; Browder, T. E ; Budano, A ; Červenkov, D ; Cheon, B. G ; Cho, H. E ; Cho, S. -J ; Cinabro, D ; Das, S ; De Nardo, G ; De Pietro, G ; Dhamija, R ; Di Capua, F ; Ferlewicz, D ; Giri, A ; Guan, Y ; Han, X ; Hedges, M. T ; Herrmann, D ; Hou, W. -S ; Hsu, C. -L ; Ipsita, N ; Itoh, R ; Kawasaki, T ; Kim, D. Y ; Korobov, A ; Korpar, S ; Kovalenko, E ; Križan, P ; Kumara, K ; Kuzmin, A ; Kwon, Y. -J ; Lee, S. C ; Li, L. K ; Li, Y ; Lieret, K ; Lin, Y. -R ; Martini, A ; Masuda, M ; Matsuoka, K ; Matvienko, D ; Meier, F ; Miyabayashi, K ; Mizuk, R ; Natkaniec, Z ; Natochii, A ; Niiyama, M ; Nisar, N. K ; Ogawa, S ; Pakhlova, G ; Pardi, S ; Pedlar, T. K ; Podobnik, T ; Prim, M. T ; Rostomyan, A ; Sandilya, S ; Sangal, A ; Santelj, L ; Savinov, V ; Schnell, G ; Senyo, K ; Shan, W ; Shapkin, M ; Shiu, J. -G ; Solovieva, E ; Starič, M ; Takizawa, M ; Tamponi, U ; Tanida, K ; Uchida, M ; Uglov, T ; Urquijo, P ; Ushiroda, Y ; Varner, G ; Wang, D ; Wang, E ; Wang, M. -Z ; Wang, X. L ; Watanuki, S ; Yabsley, B. D ; Yan, W ; Yang, S. B ; Yook, Y ; Yuan, L ; Zhilich, V</creatorcontrib><description>JHEP06 (2023) 118 Charged-lepton-flavor-violation is predicted in several new physics scenarios. We update the analysis of $\tau$ lepton decays into a light charged lepton ($\ell$ = $e^{\pm}$ or $\mu^{\pm}$) and a vector meson ($V^0$ = $\rho^0$, $\phi$, $\omega$, $K^{\ast0}$, or $\overline{K}{}^{\ast0}$) using 980 fb$^{-1}$ of data collected with the Belle detector at the KEKB collider. No significant excess of such signal events is observed, and thus 90% credibility level upper limits are set on the $\tau \rightarrow \ell V^0$ branching fractions in the range of (1.7--$4.3) \times 10^{-8}$. 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No significant excess of such signal events is observed, and thus 90% credibility level upper limits are set on the $\tau \rightarrow \ell V^0$ branching fractions in the range of (1.7--$4.3) \times 10^{-8}$. 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K ; Li, Y ; Lieret, K ; Lin, Y. -R ; Martini, A ; Masuda, M ; Matsuoka, K ; Matvienko, D ; Meier, F ; Miyabayashi, K ; Mizuk, R ; Natkaniec, Z ; Natochii, A ; Niiyama, M ; Nisar, N. K ; Ogawa, S ; Pakhlova, G ; Pardi, S ; Pedlar, T. K ; Podobnik, T ; Prim, M. T ; Rostomyan, A ; Sandilya, S ; Sangal, A ; Santelj, L ; Savinov, V ; Schnell, G ; Senyo, K ; Shan, W ; Shapkin, M ; Shiu, J. -G ; Solovieva, E ; Starič, M ; Takizawa, M ; Tamponi, U ; Tanida, K ; Uchida, M ; Uglov, T ; Urquijo, P ; Ushiroda, Y ; Varner, G ; Wang, D ; Wang, E ; Wang, M. -Z ; Wang, X. L ; Watanuki, S ; Yabsley, B. D ; Yan, W ; Yang, S. 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Y</creatorcontrib><creatorcontrib>Korobov, A</creatorcontrib><creatorcontrib>Korpar, S</creatorcontrib><creatorcontrib>Kovalenko, E</creatorcontrib><creatorcontrib>Križan, P</creatorcontrib><creatorcontrib>Kumara, K</creatorcontrib><creatorcontrib>Kuzmin, A</creatorcontrib><creatorcontrib>Kwon, Y. -J</creatorcontrib><creatorcontrib>Lee, S. C</creatorcontrib><creatorcontrib>Li, L. K</creatorcontrib><creatorcontrib>Li, Y</creatorcontrib><creatorcontrib>Lieret, K</creatorcontrib><creatorcontrib>Lin, Y. -R</creatorcontrib><creatorcontrib>Martini, A</creatorcontrib><creatorcontrib>Masuda, M</creatorcontrib><creatorcontrib>Matsuoka, K</creatorcontrib><creatorcontrib>Matvienko, D</creatorcontrib><creatorcontrib>Meier, F</creatorcontrib><creatorcontrib>Miyabayashi, K</creatorcontrib><creatorcontrib>Mizuk, R</creatorcontrib><creatorcontrib>Natkaniec, Z</creatorcontrib><creatorcontrib>Natochii, A</creatorcontrib><creatorcontrib>Niiyama, M</creatorcontrib><creatorcontrib>Nisar, N. K</creatorcontrib><creatorcontrib>Ogawa, S</creatorcontrib><creatorcontrib>Pakhlova, G</creatorcontrib><creatorcontrib>Pardi, S</creatorcontrib><creatorcontrib>Pedlar, T. K</creatorcontrib><creatorcontrib>Podobnik, T</creatorcontrib><creatorcontrib>Prim, M. 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L</creatorcontrib><creatorcontrib>Watanuki, S</creatorcontrib><creatorcontrib>Yabsley, B. D</creatorcontrib><creatorcontrib>Yan, W</creatorcontrib><creatorcontrib>Yang, S. B</creatorcontrib><creatorcontrib>Yook, Y</creatorcontrib><creatorcontrib>Yuan, L</creatorcontrib><creatorcontrib>Zhilich, V</creatorcontrib><collection>arXiv.org</collection></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext_linktorsrc</fulltext></delivery><addata><au>Tsuzuki, N</au><au>Inami, K</au><au>Aihara, H</au><au>Atmacan, H</au><au>Ayad, R</au><au>Banerjee, Sw</au><au>Behera, P</au><au>Bennett, J</au><au>Bessner, M</au><au>Bhuyan, B</au><au>Bilka, T</au><au>Biswas, D</au><au>Bodrov, D</au><au>Borah, J</au><au>Bračko, M</au><au>Branchini, P</au><au>Browder, T. E</au><au>Budano, A</au><au>Červenkov, D</au><au>Cheon, B. G</au><au>Cho, H. E</au><au>Cho, S. -J</au><au>Cinabro, D</au><au>Das, S</au><au>De Nardo, G</au><au>De Pietro, G</au><au>Dhamija, R</au><au>Di Capua, F</au><au>Ferlewicz, D</au><au>Giri, A</au><au>Guan, Y</au><au>Han, X</au><au>Hedges, M. T</au><au>Herrmann, D</au><au>Hou, W. -S</au><au>Hsu, C. -L</au><au>Ipsita, N</au><au>Itoh, R</au><au>Kawasaki, T</au><au>Kim, D. Y</au><au>Korobov, A</au><au>Korpar, S</au><au>Kovalenko, E</au><au>Križan, P</au><au>Kumara, K</au><au>Kuzmin, A</au><au>Kwon, Y. -J</au><au>Lee, S. C</au><au>Li, L. K</au><au>Li, Y</au><au>Lieret, K</au><au>Lin, Y. -R</au><au>Martini, A</au><au>Masuda, M</au><au>Matsuoka, K</au><au>Matvienko, D</au><au>Meier, F</au><au>Miyabayashi, K</au><au>Mizuk, R</au><au>Natkaniec, Z</au><au>Natochii, A</au><au>Niiyama, M</au><au>Nisar, N. K</au><au>Ogawa, S</au><au>Pakhlova, G</au><au>Pardi, S</au><au>Pedlar, T. K</au><au>Podobnik, T</au><au>Prim, M. T</au><au>Rostomyan, A</au><au>Sandilya, S</au><au>Sangal, A</au><au>Santelj, L</au><au>Savinov, V</au><au>Schnell, G</au><au>Senyo, K</au><au>Shan, W</au><au>Shapkin, M</au><au>Shiu, J. -G</au><au>Solovieva, E</au><au>Starič, M</au><au>Takizawa, M</au><au>Tamponi, U</au><au>Tanida, K</au><au>Uchida, M</au><au>Uglov, T</au><au>Urquijo, P</au><au>Ushiroda, Y</au><au>Varner, G</au><au>Wang, D</au><au>Wang, E</au><au>Wang, M. -Z</au><au>Wang, X. L</au><au>Watanuki, S</au><au>Yabsley, B. D</au><au>Yan, W</au><au>Yang, S. B</au><au>Yook, Y</au><au>Yuan, L</au><au>Zhilich, V</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Search for lepton-flavor-violating $\tau$ decays into a lepton and a vector meson using the full Belle data sample</atitle><date>2023-01-09</date><risdate>2023</risdate><abstract>JHEP06 (2023) 118 Charged-lepton-flavor-violation is predicted in several new physics scenarios. We update the analysis of $\tau$ lepton decays into a light charged lepton ($\ell$ = $e^{\pm}$ or $\mu^{\pm}$) and a vector meson ($V^0$ = $\rho^0$, $\phi$, $\omega$, $K^{\ast0}$, or $\overline{K}{}^{\ast0}$) using 980 fb$^{-1}$ of data collected with the Belle detector at the KEKB collider. No significant excess of such signal events is observed, and thus 90% credibility level upper limits are set on the $\tau \rightarrow \ell V^0$ branching fractions in the range of (1.7--$4.3) \times 10^{-8}$. These limits are improved by 30% on average from the previous results.</abstract><doi>10.48550/arxiv.2301.03768</doi><oa>free_for_read</oa></addata></record>
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identifier DOI: 10.48550/arxiv.2301.03768
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subjects Physics - High Energy Physics - Experiment
title Search for lepton-flavor-violating $\tau$ decays into a lepton and a vector meson using the full Belle data sample
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