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Electromagnetic transitions of $(b{\bar c})$ bound system

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arxiv 1801.10503 v1 pith:6FP475C3 submitted 2018-01-30 hep-ph

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

We study electromagnetic transitions: $B_c^*(ns)\to B_c(ns) e^+ e^-$, $B_c^*(ns)\to B_c(n^{\prime}s) e^+ e^-$ and $B_c(ns)\to B^*_c(n^{\prime}s) e^+ e^-$ in the relativistic independent quark (RIQ) model based on a flavor-independent potential in the scalar-vector harmonic form. The transition form factors for energetically possible transitions involving $B_c$ - and $B_c^*$- mesons in ground as well as orbitally excited states are predicted in their respective kinematic range. Our predictions on decay width for the allowed and hindered transitions are found compatible with those of the model calculations based on Bethe-Salpeter approach. Predictions in this sector would not only provide more information about members of the $B_c$-family including mass splitting between vector mesons and corresponding pseudoscalar counterparts but give hints for experimental determination of unknown masses of other excited $B_c$ - and ground state of $B_c^*$-meson, which is expected at LHCb and $Z^0$ factory in near future.

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  1. Unravelling theoretical challenges in understanding $B_c$ meson decay

    hep-ph 2024-11 reject novelty 4.0 of 10

    The paper presents new RIQ-model predictions for B_c decay ratios (R_D/D*, R_eta_c/J/psi, and tau/mu leptonic ratios) with no derivation or error bars.

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