English

The $\Lambda_b\to\Lambda^\ast(1520)(\to N\!\bar{K})\ell^+\ell^-$ decay at low-recoil in HQET

High Energy Physics - Phenomenology 2020-07-15 v4

Abstract

In this paper we discuss the Standard Model and new physics sensitivity of the ΛbΛ(1520)(N ⁣Kˉ)+\Lambda_b\to\Lambda^\ast(1520)(\to N\!\bar{K})\ell^+\ell^- decay at low-recoil, where ±\ell^\pm are massive leptons and N ⁣Kˉ={pK,nKˉ0}N\!\bar{K}=\{pK^-, n\bar{K}^0 \}. We provide a full angular distribution with a set of operators that includes the Standard Model operators and their chirality flipped counterparts, and new scalar and pseudo-scalar operators. The resulting angular distribution allows us to construct observables that we study in the Standard Model and in model-independent new physics scenarios. To reduce the hadronic effects emanating from the ΛbΛ(1520)\Lambda_b\to\Lambda^\ast(1520) transition form factors, we exploit the Heavy Quark Effective theory framework valid at low Λ(1520)\Lambda^\ast(1520) recoil, \emph{i.e.,} large dilepton invariant mass squared q2O(mb2)q^2\sim \mathcal{O}(m_b^2). Working to the leading order in 1/mb1/m_b and including O(αs)\mathcal{O}(\alpha_s) corrections, we compute the `improved Isgur-Wise relations' between the form factors. The relations correlate the form factors and thereby allow the description of this decay at the low-recoil region with a smaller number of independent form factors.

Keywords

Cite

@article{arxiv.2003.08366,
  title  = {The $\Lambda_b\to\Lambda^\ast(1520)(\to N\!\bar{K})\ell^+\ell^-$ decay at low-recoil in HQET},
  author = {Diganta Das and Jaydeb Das},
  journal= {arXiv preprint arXiv:2003.08366},
  year   = {2020}
}

Comments

30 pages, 4 figures, 1 table, the version to appear in JHEP