English

New results on the baryon decay Lambda_b -> Lambda_c ell nu in Heavy Quark Effective Theory

High Energy Physics - Phenomenology 2015-06-04 v1

Abstract

The baryon differential spectrum of the baryon decay ΛbΛcνˉ\Lambda_b \to \Lambda_c \ell \bar{\nu}_\ell will be measured in detail at LHCb. We obtain new results on the form factors in the heavy quark expansion of Heavy Quark Effective Theory that can be useful in the interpretation of the data. We formulate a sum rule for the elastic subleading form factor A(w)A(w) at order 1/mQ1/m_Q, that originates from the Lagrangian perturbation Lkin\mathcal{L}_{kin}. In the sum rule appear only the intermediate states (jP,JP)=(0+,12+)(j^P, J^P) = (0^+, {1 \over 2}^+), entering also in the 1/mQ21/{m_Q^2} correction to the axial form factor G1(w)G_1(w), that contributes to the differential rate at zero recoil w=1w = 1. This result, together with another sum rule in the forward direction for G1(1)2|G_1(1)|^2, allows us to obtain a lower bound for the correction at zero recoil δ1/mQ2(G1)- \delta_{1/{m_Q^2}}^{(G_1)} in terms of the derivative A1(1)A'_1(1) and the slope ρΛ2\rho^2_\Lambda and curvature σΛ2\sigma^2_\Lambda of the elastic Isgur-Wise function ξΛ(w)\xi_{\Lambda}(w). Another theoretical implication is that A(1)A'(1) must vanish for some relation between ρΛ2\rho^2_\Lambda and σΛ2\sigma^2_\Lambda, as well as for ρΛ20\rho^2_\Lambda \to 0, establishing a non-trivial correlation between the leading IW function ξΛ(w)\xi_{\Lambda}(w) and the subleading one A(w)A(w). A phenomenological estimation of these two functions allows to obtain a lower bound on δ1/mQ2(G1)- \delta_{1/{m_Q^2}}^{(G_1)}.

Keywords

Cite

@article{arxiv.1202.4100,
  title  = {New results on the baryon decay Lambda_b -> Lambda_c ell nu in Heavy Quark Effective Theory},
  author = {F. Jugeau and Yu Jia and L. Oliver},
  journal= {arXiv preprint arXiv:1202.4100},
  year   = {2015}
}
R2 v1 2026-06-21T20:21:33.343Z