English

Optimized predictions for $W \to B_c + \gamma$ by combining light-cone and NRQCD approaches

High Energy Physics - Phenomenology 2019-03-01 v1 High Energy Physics - Experiment

Abstract

The rare process of WW radiative decay into the BcB_c meson can serve as an interesting play ground for testing two influential perturbative QCD approaches: non-relativistic quantum chromodynamics (NRQCD) and ligh-cone (LC) factorization. Since the BcB_c meson is a genuine heavy quarkonium which is composed of two different species of heavy quarks, it is natural to employ NRQCD factorization to tackle this exclusive quarkonium production process; on the other hand, since the mass of the WW boson is much greater than that of the BcB_c, the collinear factorization is also a viable approach. To fully disentangle the contributions from several distinct scales MWM_W, mQm_Q, mQvm_Q v (vv represents the typical velocity of the c/bˉc/\bar{b} quarks inside BcB_c), and ΛQCD\Lambda_{\rm QCD}, we carry out a joint analysis that combines both light-cone and NRQCD factorization approaches, and compute the order-αs\alpha_s correction to WBc+γW \to B_c+\gamma. With the aid of the celebrated Efremov-Radyushkin-Brodsky-Lepage (ERBL) evolution equation, we resum the leading collinear logarithms αsln ⁣MWmQ\alpha_s \ln\! {M_W\over m_Q} to all orders in αs\alpha_s. We also explore some phenomenological implications of our predictions.

Keywords

Cite

@article{arxiv.1902.11288,
  title  = {Optimized predictions for $W \to B_c + \gamma$ by combining light-cone and NRQCD approaches},
  author = {Feng Feng and Yu Jia and Wen-Long Sang},
  journal= {arXiv preprint arXiv:1902.11288},
  year   = {2019}
}

Comments

16 pages, 3 figures