Anomalous $tq\gamma$ coupling effects in exclusive radiative B-meson decays
Xin-Qiang Li, Ya-Dong Yang, Xing-Bo Yuan

TL;DR
This paper investigates how anomalous top-quark interactions affect rare B-meson decays and derives bounds on these couplings, providing insights into potential new physics signals at the LHC and future experiments.
Contribution
It presents new bounds on top-quark anomalous couplings from B-meson decay data and explores their implications for top quark rare decays and collider searches.
Findings
Bounds on $ ext{Br}(t o c ext{ } ext{gamma})$ are tighter than previous results.
Isospin asymmetry further constrains the phase of the anomalous coupling.
Predicted top decay branching ratios are within reach of LHC experiments.
Abstract
The top-quark FCNC processes will be searched for at the CERN LHC, which are correlated with the B-meson decays. In this paper, we study the effects of top-quark anomalous interactions in the exclusive radiative and decays. With the current experimental data of the branching ratios, the direct CP and the isospin asymmetries, bounds on the coupling from and from decays are derived, respectively. The bound on from is generally compatible with that from . However, the isospin asymmetry further restrict the phase of , and the combined bound results in the upper limit, , which is lower than the CDF…
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