$Z$ Boson Decay into Light and Darkness
Abstract
We study the process in which the boson decays into a photon and a massless dark photon , when the latter couples to standard-model fermions via dipole moments. This is a simple yet nontrivial example of how the Landau-Yang theorem---ruling out the decay of a massive spin-1 particle into two photons---is evaded if the final particles can be distinguished. The striking signature of this process is a resonant monochromatic single photon in the -boson center of mass together with missing momentum. LEP experimental bounds allow a branching ratio up to about 10 for such a decay. In a simplified model of the dark sector, the dark-photon dipole moments arise from one-loop exchange of heavy dark fermions and scalar messengers. The corresponding prediction for the rare decay width can be explored with the large samples of bosons foreseen at future colliders.
Cite
@article{arxiv.1712.05412,
title = {$Z$ Boson Decay into Light and Darkness},
author = {M. Fabbrichesi and E. Gabrielli and B. Mele},
journal= {arXiv preprint arXiv:1712.05412},
year = {2018}
}
Comments
Same as published PRL version, minor comments added, 5 pages, 3 figures