Publications [#374687] of Anselm G. Vossen

Papers Published
  1. Bloomfield, T; Sevior, ME; Adachi, I; Aihara, H; Al Said, S; Asner, DM; Aulchenko, V; Aushev, T; Ayad, R; Babu, V; Bahinipati, S; Behera, P; Bennett, J; Bessner, M; Bilka, T; Biswal, J; Bobrov, A; Bonvicini, G; Bozek, A; Bračko, M; Browder, TE; Campajola, M; Cao, L; Červenkov, D; Chang, MC; Chekelian, V; Chen, A; Cheon, BG; Chilikin, K; Cho, HE; Cho, K; Cho, SJ; Choi, SK; Choi, Y; Choudhury, S; Cinabro, D; Cunliffe, S; Das, S; Dash, N; De Nardo, G; Dhamija, R; Di Capua, F; DoleŽal, Z; Dong, TV; Dubey, S; Eidelman, S; Epifanov, D; Ferber, T; Ferlewicz, D; Fulsom, BG; Garg, R; Gaur, V; Garmash, A; Giri, A; Goldenzweig, P; Hadjivasiliou, C; Halder, S; Hartbrich, O; Hayasaka, K; Hayashii, H; Hedges, MT; Hernandez Villanueva, M; Hou, WS; Hsu, CL; Iijima, T; Inguglia, G; Ishikawa, A; Itoh, R; Iwasaki, M; Iwasaki, Y; Jacobs, WW; Jang, EJ; Jia, S; Jin, Y; Joo, CW; Joo, KK; Kaliyar, AB; Kang, KH; Karyan, G; Kawasaki, T; Kim, CH; Kim, DY; Kim, HJ; Kim, SH; Kim, YK; Kimmel, TD; Kodyš, P; Konno, T; Korobov, A; Korpar, S; Kovalenko, E; KriŽan, P; Kroeger, R; Krokovny, P; Kumar, M; Kumar, R; Kumara, K; Kwon, YJ; Lalwani, K; Lange, JS, Measurement of the branching fraction and CP asymmetry for B → D ¯ 0π decays, Physical Review D, vol. 105 no. 7 (April, 2022) [doi] .

    Abstract:
    We measure the branching fractions and CP asymmetries for the decays B0→D¯0π0 and B+→D¯0π+, using a data sample of 772×106 BB¯ pairs collected at the (4S) resonance with the Belle detector at the KEKB e+e- collider. The branching fractions obtained and direct CP asymmetries are B(B0→D¯0π0)=[2.70±0.06(stat)±0.10(syst)]×10-4, B(B+→D¯0π+)=[4.53±0.02(stat)±0.15(syst)]×10-3, ACP(B0→D¯0π0)=[+0.42±2.05(stat)±1.22(syst)]%, and ACP(B+→D¯0π+)=[+0.19±0.36(stat)±0.57(syst)]%. The measurements of B are the most precise to date and are in good agreement with previous results, as is the measurement of ACP(B+→D¯0π+). The measurement of ACP for B0→D¯0π0 is the first for this mode, and the value is consistent with Standard Model expectations.

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