English

Precision Global Determination of the $B\to X_s\gamma$ Decay Rate

High Energy Physics - Phenomenology 2021-09-08 v1 High Energy Physics - Experiment Nuclear Theory

Abstract

We perform the first global fit to inclusive BXsγB\to X_s\gamma measurements using a model-independent treatment of the nonperturbative bb-quark distribution function, with next-to-next-to-leading logarithmic resummation and O(αs2)\mathcal{O}(\alpha_s^2) fixed-order contributions. The normalization of the BXsγB\to X_s\gamma decay rate, given by C7inclVtbVts2\lvert C_7^{\rm incl} V_{tb} V_{ts}^*\rvert^2, is sensitive to physics beyond the Standard Model (SM). We determine C7inclVtbVts=(14.77±0.51fit±0.59theory±0.08param)×103\lvert C_7^{\rm incl} V_{tb} V_{ts}^* \rvert = (14.77 \pm 0.51_{\rm fit} \pm 0.59_{\rm theory} \pm 0.08_{\rm param})\times 10^{-3}, in good agreement with the SM prediction, and the bb-quark mass mb1S=(4.750±0.027fit±0.033theory±0.003param)GeVm_b^{1S} = (4.750 \pm 0.027_{\rm fit} \pm 0.033_{\rm theory} \pm 0.003_{\rm param})\,\mathrm{GeV}. Our results suggest that the uncertainties in the extracted BXsγB\to X_s\gamma rate have been underestimated by up to a factor of two, leaving more room for beyond-SM contributions.

Keywords

Cite

@article{arxiv.2007.04320,
  title  = {Precision Global Determination of the $B\to X_s\gamma$ Decay Rate},
  author = {SIMBA collaboration and Florian U. Bernlochner and Heiko Lacker and Zoltan Ligeti and Iain W. Stewart and Frank J. Tackmann and Kerstin Tackmann},
  journal= {arXiv preprint arXiv:2007.04320},
  year   = {2021}
}

Comments

21 pages, 8 figures