Measurement of $\mathcal{R}(D)$ and $\mathcal{R}(D^*)$ with a semileptonic tagging method
Abstract
The experimental results on the ratios of branching fractions and , where denotes an electron or a muon, show a long-standing discrepancy with the Standard Model predictions, and might hint to a violation of lepton flavor universality. We report a new simultaneous measurement of and , based on a data sample containing events recorded at the resonance with the Belle detector at the KEKB collider. In this analysis the tag-side meson is reconstructed in a semileptonic decay mode and the signal-side is reconstructed in a purely leptonic decay. The measured values are and , where the first uncertainties are statistical and the second are systematic. These results are in agreement with the Standard Model predictions within , and standard deviations for , and their combination, respectively. This work constitutes the most precise measurements of and performed to date as well as the first result for based on a semileptonic tagging method.
Keywords
Cite
@article{arxiv.1910.05864,
title = {Measurement of $\mathcal{R}(D)$ and $\mathcal{R}(D^*)$ with a semileptonic tagging method},
author = {The Belle Collaboration and G. Caria and P. Urquijo and I. Adachi and H. Aihara and S. Al Said and D. M. Asner and H. Atmacan and T. Aushev and V. Babu and I. Badhrees and A. M. Bakich and P. Behera and C. Beleño and J. Bennett and B. Bhuyan and T. Bilka and J. Biswal and M. Bračko and T. E. Browder and M. Campajola and D. Červenkov and P. Chang and R. Cheaib and V. Chekelian and A. Chen and B. G. Cheon and K. Chilikin and H. E. Cho and K. Cho and Y. Choi and S. Choudhury and D. Cinabro and S. Cunliffe and N. Dash and G. De Nardo and F. Di Capua and S. Di Carlo and Z. Doležal and T. V. Dong and S. Eidelman and D. Epifanov and J. E. Fast and T. Ferber and D. Ferlewicz and B. G. Fulsom and R. Garg and V. Gaur and N. Gabyshev and A. Garmash and A. Giri and P. Goldenzweig and D. Greenwald and O. Grzymkowska and Y. Guan and O. Hartbrich and K. Hayasaka and H. Hayashii and T. Higuchi and W. -S. Hou and C. -L. Hsu and K. Inami and G. Inguglia and A. Ishikawa and R. Itoh and M. Iwasaki and Y. Iwasaki and W. W. Jacobs and H. B. Jeon and S. Jia and Y. Jin and D. Joffe and K. K. Joo and A. B. Kaliyar and K. H. Kang and G. Karyan and T. Kawasaki and H. Kichimi and C. H. Kim and D. Y. Kim and H. J. Kim and K. T. Kim and S. H. Kim and K. Kinoshita and P. Kodyš and S. Korpar and D. Kotchetkov and R. Kroeger and P. Krokovny and R. Kumar and Y. -J. Kwon and J. S. Lange and I. S. Lee and J. K. Lee and S. C. Lee and L. K. Li and Y. B. Li and L. Li Gioi and J. Libby and K. Lieret and D. Liventsev and T. Luo and M. Masuda and T. Matsuda and D. Matvienko and M. Merola and F. Metzner and K. Miyabayashi and G. B. Mohanty and T. J. Moon and T. Mori and R. Mussa and K. R. Nakamura and K. J. Nath and M. Nayak and N. K. Nisar and S. Nishida and K. Nishimura and K. Ogawa and H. Ono and Y. Onuki and P. Oskin and P. Pakhlov and G. Pakhlova and B. Pal and T. Pang and H. Park and S. -H. Park and S. Patra and S. Paul and T. K. Pedlar and R. Pestotnik and L. E. Piilonen and V. Popov and E. Prencipe and M. T. Prim and A. Rabusov and P. K. Resmi and M. Ritter and G. Russo and D. Sahoo and S. Sandilya and L. Santelj and T. Sanuki and O. Schneider and G. Schnell and J. Schueler and C. Schwanda and Y. Seino and K. Senyo and M. E. Sevior and V. Shebalin and J. -G. Shiu and B. Shwartz and F. Simon and A. Sokolov and E. Solovieva and M. Starič and Z. S. Stottler and T. Sumiyoshi and W. Sutcliffe and M. Takizawa and U. Tamponi and K. Tanida and F. Tenchini and M. Uchida and T. Uglov and S. Uno and Y. Usov and S. E. Vahsen and R. Van Tonder and G. Varner and A. Vossen and E. Waheed and B. Wang and C. H. Wang and M. -Z. Wang and P. Wang and X. L. Wang and S. Watanuki and J. Wiechczynski and E. Won and H. Yamamoto and S. B. Yang and H. Ye and J. H. Yin and C. Z. Yuan and Z. P. Zhang and V. Zhilich and V. Zhukova and V. Zhulanov},
journal= {arXiv preprint arXiv:1910.05864},
year = {2020}
}
Comments
8 pages, 1 figure, submitted to Physical Review Letters