Hadrophilic Dark Sectors at the Forward Physics Facility
Abstract
Models with light dark sector and dark matter particles motivate qualitatively new collider searches. Here we carry out a comprehensive study of hadrophilic models with U(1) and U(1) gauge bosons coupled to light dark matter. The new mediator particles in these models couple to quarks, but have suppressed couplings to leptons, providing a useful foil to the well-studied dark photon models. We consider current bounds from accelerator and collider searches, rare anomaly-induced decays, neutrino non-standard interactions, and dark matter direct detection. Despite the many existing constraints, these models predict a range of new signatures that can be seen in current and near future experiments, including dark gauge boson decays to the hadronic final states , , , and in FASER at LHC Run 3, enhancements of scattering rates in far-forward neutrino detectors, and thermal dark matter scattering in FLArE in the HL-LHC era. These models therefore motivate an array of different experiments in the far-forward region at the LHC, as could be accommodated in the proposed Forward Physics Facility.
Cite
@article{arxiv.2111.10343,
title = {Hadrophilic Dark Sectors at the Forward Physics Facility},
author = {Brian Batell and Jonathan L. Feng and Max Fieg and Ahmed Ismail and Felix Kling and Roshan Mammen Abraham and Sebastian Trojanowski},
journal= {arXiv preprint arXiv:2111.10343},
year = {2022}
}
Comments
v2: Updated to PRD version, results unchanged v3: Corrected a minor typo in Eq. 13, results unchanged