English

Lattice QCD calculation of form factors for $\Lambda_b \to \Lambda(1520) \ell^+ \ell^-$ decays

High Energy Physics - Lattice 2017-03-22 v3 High Energy Physics - Phenomenology

Abstract

Experimental results for mesonic bsμ+μb \to s \mu^+ \mu^- decays show a pattern of deviations from Standard-Model predictions, which could be due to new fundamental physics or due to an insufficient understanding of hadronic effects. Additional information on the bsμ+μb \to s \mu^+ \mu^- transition can be obtained from Λb\Lambda_b decays. This was recently done using the process ΛbΛμ+μ\Lambda_b \to \Lambda \mu^+ \mu^-, where the Λ\Lambda is the lightest strange baryon. A further interesting channel is Λbp+Kμ+μ\Lambda_b \to p^+ K^- \mu^+ \mu^-, where the p+Kp^+ K^- final state receives contributions from multiple higher-mass Λ\Lambda resonances. The narrowest and most prominent of these is the Λ(1520)\Lambda(1520), which has JP=32J^P=\frac32^-. Here we present an ongoing lattice QCD calculation of the relevant ΛbΛ(1520)\Lambda_b \to \Lambda(1520) form factors. We discuss the choice of interpolating field for the Λ(1520)\Lambda(1520), and explain our method for extracting the fourteen ΛbΛ(1520)\Lambda_b \to \Lambda(1520) helicity form factors from correlation functions that are computed in the Λ(1520)\Lambda(1520) rest frame. We present preliminary numerical results at a pion mass of 340 MeV and a lattice spacing of 0.11 fm. This calculation uses a domain-wall action for the uu, dd, and ss quarks and a relativistic heavy-quark action for the bb quark, and is based on gauge-field configurations generated by the RBC and UKQCD Collaborations.

Keywords

Cite

@article{arxiv.1608.08110,
  title  = {Lattice QCD calculation of form factors for $\Lambda_b \to \Lambda(1520) \ell^+ \ell^-$ decays},
  author = {Stefan Meinel and Gumaro Rendon},
  journal= {arXiv preprint arXiv:1608.08110},
  year   = {2017}
}

Comments

7 pages, 3 figures