THE PHYSICS OF ELEMENTARY PARTICLES AND FIELDS |
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Semileptonic Production of Scalar and Tensor p-Wave Charmed Mesons |
JIANG Yue1, WANG Guo-Li1**, WANG Tian-Hong1, JU Wan-Li1 |
1Department of Physics, Harbin Institute of Technology, Harbin 150001
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Cite this article: |
JIANG Yue, WANG Guo-Li, WANG Tian-Hong et al 2013 Chin. Phys. Lett. 30 101101 |
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Abstract With the same constituents of quark and antiquark, the p-wave state has a higher mass than the corresponding s-wave state, but the relativistic corrections are much larger in the processes of which p-wave mesons are involved. Considering this, the relativistic Bethe–Salpeter method is applied to estimate the branching fractions of semileptonic decays B(s)→D*(sJ)lν (J=0,2). Our predictions are Br[B0s→D*+s0(2317)l?ν]=0.50%, Br[B0s→D*+s2(2573)l?ν]=0.40%, Br[B?→D*00(2400)l?ν]=0.79%, Br[B?→D*02(2460)l?ν]=0.28%, Br[B0→D*+0(2400)l?ν]=0.58% and Br[B0→D*+2(2460)l?ν]=0.27%.
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Received: 06 March 2013
Published: 21 November 2013
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PACS: |
11.10.St
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(Bound and unstable states; Bethe-Salpeter equations)
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12.39.Ki
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(Relativistic quark model)
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13.20.He
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(Decays of bottom mesons)
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14.40.Lb
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(Charmed mesons (|C|>0, B=0))
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