arXiv:1704.00790·v2·High Energy Physics — Phenomenology
Radiative Decays of the Higgs Boson to a Pair of Fermions
Abstract
We revisit the radiative decays of the Higgs boson to a fermion pair where denotes a fermion in the Standard Model (SM). We include the chirality-flipping diagrams via the Yukawa couplings at the order , the chirality-conserving contributions via the top-quark loops of the order , and the electroweak loops at the order . The QED correction is about and contributes to the running of fermion masses at a similar level, which should be taken into account for future precision Higgs physics. The chirality-conserving electroweak-loop processes are interesting from the observational point of view. First, the branching fraction of the radiative decay is about a half of that of , and that of is more than four orders of magnitude larger than that of , both of which reach about . The branching fraction of is of the order . All the leptonic radiative decays are potentially observable at the LHC Run 2 or the HL-LHC. The kinematic distributions for the photon energy or the fermion pair invariant mass provide non-ambiguous discrimination for the underlying mechanisms of the Higgs radiative decay. We also study the process and evaluate the observability at the LHC. We find it comparable to the other related studies and better than the channel in constraining the charm-Yukawa coupling.
Comments: 23 pages, 6 figures, 6 tables; Minor corrections, references updated, version published in JHEP