English

Exact NLO Matching and Analyticity in $b\to s\ell\ell$

High Energy Physics - Phenomenology 2020-04-07 v1 High Energy Physics - Experiment High Energy Physics - Lattice

Abstract

Exclusive rare decays mediated by bsb\to s\ell\ell transitions receive contributions from four-quark operators that cannot be naively expressed in terms of local form factors. Instead, one needs to calculate a matrix element of a bilocal operator. In certain kinematic regions, this bilocal operator obeys some type of Operator Product Expansion, with coefficients that can be calculated in perturbation theory. We review the formalism and, focusing on the dominant SM operators O1,2{\cal O}_{1,2}, we perform an improved calculation of the NLO matching for the leading dimension-three operators. This calculation is performed completely analytically in the two relevant mass scales (charm-quark mass mcm_c and dilepton squared mass q2q^2), and we pay particular attention to the analytic continuation in the complex q2q^2 plane. This allows for the first time to study the analytic structure of the non-local form factors at NLO, and to calculate the OPE coefficients far below q2=0q^2=0, say q210GeV2q^2 \lesssim -10\,{\rm GeV}^2. We also provide explicitly the contributions proportional to different charge factors, which obey separate dispersion relations.

Keywords

Cite

@article{arxiv.1912.09099,
  title  = {Exact NLO Matching and Analyticity in $b\to s\ell\ell$},
  author = {Hrachia M. Asatrian and Christoph Greub and Javier Virto},
  journal= {arXiv preprint arXiv:1912.09099},
  year   = {2020}
}

Comments

38 pages, 6 figures