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$B_s \rightarrow D_s^*$ Form Factors for the full $q^2$ range from Lattice QCD

High Energy Physics - Lattice 2022-06-08 v2 High Energy Physics - Phenomenology

Abstract

We compute the Standard Model semileptonic vector and axial-vector form factors for BsDsB_s\to D_s^* decay across the full q2q^2 range using lattice QCD. We use the Highly Improved Staggered Quark (HISQ) action for all valence quarks, enabling us to normalise weak currents nonperturbatively. We use gluon field configurations including uu, dd, ss and cc HISQ sea quarks and multiple HISQ heavy quarks with masses from the cc mass up to that of the bb on our finest lattices. We determine the physical form factors, with which we construct the differential and total rates for Γ(Bs0Ds+ν)\Gamma(B_s^0\to D_s^{*-}\ell^+{\nu}_\ell). We find Γ=e/ηEWVcb2=2.07(17)latt(2)EM×1013 s1\Gamma_{\ell=e}/|\eta_\mathrm{EW}V_{cb}|^2=2.07(17)_\mathrm{latt}(2)_\mathrm{EM}\times 10^{13} ~\mathrm{s}^{-1}, Γ=μ/ηEWVcb2=2.06(16)latt(2)EM×1013 s1\Gamma_{\ell=\mu}/|\eta_\mathrm{EW}V_{cb}|^2=2.06(16)_\mathrm{latt}(2)_\mathrm{EM}\times 10^{13} ~\mathrm{s}^{-1} and Γ=τ/ηEWVcb2=5.14(37)latt(5)EM×1012 s1\Gamma_{\ell=\tau}/|\eta_\mathrm{EW}V_{cb}|^2=5.14(37)_\mathrm{latt}(5)_\mathrm{EM}\times 10^{12} ~\mathrm{s}^{-1}, where ηEW\eta_\mathrm{EW} contains the electroweak correction to GFG_F, the first uncertainty is from our lattice calculation, and the second allows for long-distance QED effects. We compute the ratio R(Ds)Γ=τ/Γ=μ=0.2490(60)latt(35)EMR(D_s^{*-})\equiv \Gamma_{\ell=\tau}/\Gamma_{\ell=\mu}=0.2490(60)_\mathrm{latt}(35)_\mathrm{EM} and obtain a value for the ratio of decay rates Γ=μ(BsDs)/Γ=μ(BsDs)=0.443(40)latt(4)EM\Gamma_{\ell=\mu}(B_s\to D_s)/\Gamma_{\ell=\mu}(B_s\to D_s^*)=0.443(40)_\mathrm{latt}(4)_\mathrm{EM}, which agrees well with recent LHCb results. We determine Vcb=42.2(1.5)latt(1.7)exp(0.4)EM×103|V_{cb}|=42.2 (1.5)_\mathrm{latt}(1.7)_\mathrm{exp}(0.4)_\mathrm{EM} \times 10^{-3} by combining our lattice results across the full q^2 range with experimental results from LHCb. A comparison of our results to the normalised differential decay rate from LHCb shows good agreement. We also test the impact of new physics couplings on observables sensitive to lepton flavor universality violation.

Keywords

Cite

@article{arxiv.2105.11433,
  title  = {$B_s \rightarrow D_s^*$ Form Factors for the full $q^2$ range from Lattice QCD},
  author = {Judd Harrison and Christine T. H. Davies},
  journal= {arXiv preprint arXiv:2105.11433},
  year   = {2022}
}

Comments

32 pages, 23 figures. arXiv admin note: text overlap with arXiv:2007.06957