English

A strategy for B-physics observables in the continuum limit

High Energy Physics - Lattice 2023-12-18 v1 High Energy Physics - Phenomenology

Abstract

In a somewhat forgotten paper [1] it was shown how to perform interpolations between relativistic and static computations in order to obtain results for heavy-light observables for masses from, say, mcharmm_{\rm charm} to mbottomm_{\rm bottom}. All quantities are first continuum extrapolated and then interpolated in 1/mh=1/mheavy1/m_h=1/m_{\rm heavy}. Large volume computations are combined with finite volume ones where a relativistic bottom quark is accessible with small ambottomam_{\rm bottom}. We discuss how this strategy is extended to semi-leptonic form factors and other quantities of phenomenological interest. The essential point is to form quantities where the limit mhm_h\to\infty is approached with power corrections O(1/mh)(1/m_h) only. Perturbative corrections αs(mh)γ+n\sim\alpha_s(m_h)^{\gamma+n} are cancelled in the construction of the observables. We also point out how such an approach can help to control systematics in semi-leptonic decays with just large volume data. First numerical results with Nf=2+1N_f = 2 + 1 and lattice spacings down to 0.039 fm are presented in [2].

Keywords

Cite

@article{arxiv.2312.09811,
  title  = {A strategy for B-physics observables in the continuum limit},
  author = {Alessandro Conigli and Julien Frison and Patrick Fritzsch and Antoine Gérardin and Jochen Heitger and Gregorio Herdoiza and Simon Kuberski and Carlos Pena and Hubert Simma and Rainer Sommer},
  journal= {arXiv preprint arXiv:2312.09811},
  year   = {2023}
}

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R2 v1 2026-06-28T13:52:23.941Z