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Measurements of the branching fractions mathcal{B} (bar{B}{}⁰ to D^(*+) π^-) and mathcal{B} (bar{B}{}⁰ to D^(*+) K^-) and tests of QCD factorization

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arxiv 2207.00134 v2 pith:FKMTP4L5 submitted 2022-07-01 hep-ex

Measurements of the branching fractions mathcal{B} (bar{B}{}⁰ to D^(*+) π^-) and mathcal{B} (bar{B}{}⁰ to D^(*+) K^-) and tests of QCD factorization

Belle Collaboration: J. F. Krohn , D. Ferlewicz , P. Urquijo , I. Adachi , H. Aihara , S. Al Said , D. M. Asner , H. Atmacan
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T. Aushev R. Ayad V. Babu S. Bahinipati P. Behera K. Belous M. Bessner V. Bhardwaj B. Bhuyan T. Bilka D. Bodrov G. Bonvicini J. Borah A. Bozek M. Bra\v{c}ko P. Branchini T. E. Browder A. Budano M. Campajola D. \v{C}ervenkov M.-C. Chang P. Chang V. Chekelian A. Chen B. G. Cheon K. Chilikin H. E. Cho K. Cho S.-J. Cho Y. Choi S. Choudhury D. Cinabro S. Cunliffe S. Das N. Dash G. De Nardo G. De Pietro R. Dhamija F. Di Capua Z. Dole\v{z}al T. V. Dong D. Epifanov T. Ferber B. G. Fulsom R. Garg V. Gaur N. Gabyshev P. Goldenzweig B. Golob E. Graziani T. Gu K. Gudkova C. Hadjivasiliou T. Hara K. Hayasaka H. Hayashii W.-S. Hou C.-L. Hsu K. Inami A. Ishikawa M. Iwasaki Y. Iwasaki W. W. Jacobs E.-J. Jang S. Jia Y. Jin K. K. Joo J. Kahn A. B. Kaliyar K. H. Kang T. Kawasaki H. Kichimi C. Kiesling C. H. Kim D. Y. Kim Y.-K. Kim K. Kinoshita P. Kody\v{s} T. Konno A. Korobov S. Korpar E. Kovalenko P. Kri\v{z}an P. Krokovny M. Kumar R. Kumar K. Kumara Y.-J. Kwon T. Lam M. Laurenza S. C. Lee J. Li L. K. Li Y. B. Li L. Li Gioi J. Libby D. Liventsev A. Martini M. Masuda T. Matsuda D. Matvienko S. K. Maurya F. Meier M. Merola F. Metzner K. Miyabayashi R. Mizuk G. B. Mohanty R. Mussa M. Nakao D. Narwal Z. Natkaniec A. Natochii L. Nayak N. K. Nisar S. Nishida K. Nishimura K. Ogawa S. Ogawa H. Ono P. Oskin P. Pakhlov G. Pakhlova T. Pang S. Pardi S.-H. Park S. Patra T. K. Pedlar R. Pestotnik L. E. Piilonen T. Podobnik V. Popov M. T. Prim M. R\"ohrken A. Rostomyan N. Rout G. Russo D. Sahoo S. Sandilya A. Sangal L. Santelj T. Sanuki V. Savinov G. Schnell J. Schueler C. Schwanda Y. Seino K. Senyo M. E. Sevior M. Shapkin C. Sharma V. Shebalin C. P. Shen J.-G. Shiu B. Shwartz F. Simon E. Solovieva S. Stani\v{c} M. Stari\v{c} Z. S. Stottler M. Sumihama K. Sumisawa T. Sumiyoshi W. Sutcliffe M. Takizawa U. Tamponi K. Tanida F. Tenchini K. Trabelsi M. Uchida Y. Unno K. Uno S. Uno S. E. Vahsen R. van Tonder G. Varner K. E. Varvell A. Vinokurova E. Waheed E. Wang M.-Z. Wang X. L. Wang S. Watanuki E. Won W. Yan H. Ye J. Yelton J. H. Yin Y. Yusa Y. Zhai V. Zhilich V. Zhukova
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keywords mathcaltimesbranchingfractionsuncertaintiesfactorizationmeasuredmeson
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Using $(771.6 \pm 10.6) \times 10^6$ $B\bar{B}$ meson pairs recorded by the Belle experiment at the KEKB $e^+ e^-$ collider, we report the branching fractions $\mathcal{B}(\bar{B}^0 \to D^{*+} \pi^-) = (2.62 \pm 0.02 \pm 0.09)\times 10^{-3}$ and $\mathcal{B}(\bar{B}^0 \to D^{*+} K^-) = (2.22 \pm 0.06 \pm 0.08)\times 10^{-4}$; the quoted uncertainties are statistical and systematic, respectively. A measurement of the ratio of these branching fractions is also presented, $\mathcal{R}_{K/\pi}=\mathcal{B}(\bar{B} \to D^{*+}K^-) /\mathcal{B}( \bar{B} \to D^{*+}\pi^-) = (8.41 \pm 0.24 \pm 0.13)\times 10^{-2}$, where systematic uncertainties due to the $D^{*+}$ meson reconstruction cancel out. Furthermore, we report a new QCD factorization test based on the measured ratios for $\bar{B} \to D^{*+}h^-$ and $\bar{B} \to D^{*+}\ell^-\nu$ decays at squared momentum transfer values equivalent to the mass of the $h = \pi$ or $K$ hadron. The parameters $|a_1(h)|$ are measured to be $|a_1(\pi)|= 0.884 \pm 0.004 \pm 0.003 \pm 0.016$ and $|a_1(K)|=0.913 \pm 0.019 \pm 0.008 \pm 0.013$, where the last uncertainties account for all external inputs. These values are approximately $15\%$ lower than those expected from theoretical predictions. Subsequently, flavor $SU(3)$ symmetry is tested by measuring the ratios for pions and kaons, $|a_1(K)|^2/ |a_1(\pi)|^2=1.066 \pm 0.042 \pm 0.018 \pm 0.023$, as well as for different particle species. The ratio is consistent with unity and therefore no evidence for $SU(3)$ symmetry breaking effects is found at the $5\%$ precision level.

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