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Spectroscopy, Decay properties and Regge trajectories of the $B$ and $B_s$ mesons

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arxiv 1705.08248 v1 pith:6LQMN7C7 submitted 2017-05-23 hep-ph

classification hep-ph
keywords statemesonsagreementcorrectionenergygoodpotentialregge
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

A Gaussian wave function is used for detailed study of mass spectra of the $B$ and $B_S$ mesons using a Cornell potential incorporated with a $\mathcal{O}(1/m)$ correction in the potential energy term and expansion of the kinetic energy term up to a ${{\cal{O}}\left({\bf p}^{10}\right)}$ for relativistic correction of the Hamiltonian. The predicted excited states for the $B$ and $B_s$ mesons are in very good agreement with results obtained by experiment. We assigned the $B_{2}(5747)$ and $B_{s2}(5840)$ as $1^{3}p_{2}$ state, the $B_{1}(5721)$ and $B_{s1}(5830)$ as $1 p_{1}$ state, the $B_{0}(5732)$ as $1^{3}p_{0}$ state, the $B_{s1}(5850)$ as $1p_{1}^{'}$ state and the $B(5970)$ as $2^{3}S_{1}$ state. We investigate the Regge trajectories in the $(J,M^{2})$ and $(n_r,M^{2})$ planes with their corresponding parameters. Branching ratio for leptonic and radiative-leptonic decays are estimated for the $B$ and $B_S$ mesons. Our results are in good agreement with experimental observation as well as outcomes of other theoretical models.

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Cited by 1 Pith paper

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  1. Relativistic effects in $\mbox{M1}$ radiative decays of heavy-light mesons

    hep-ph 2025-07 conditional novelty 5.0 of 10

    A relativistic potential model, with all parameters taken from meson masses, predicts M1 radiative widths for D and D_s mesons and gives a B_s hyperfine splitting close to the new CMS measurement.

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