Closing the light gluino gap with electron-proton colliders
Abstract
The future electron-proton collider proposals, LHeC and FCC-he, can deliver (TeV) center-of-mass energy collisions, higher than most of the proposed lepton accelerators, with (ab) luminosity, while maintaining a much cleaner experimental environment as compared to the hadron machines. This unique capability of colliders can be harnessed in probing BSM scenarios giving final states that look like hadronic noise at machines. In the present study, we explore the prospects of detecting such a prompt signal having multiple soft jets at the LHeC. Such a signal can come from the decay of gluino in RPV or Stealth SUSY, where there exists a gap in the current experimental search with GeV. We perform a simple analysis to demonstrate that, with simple signal selection cuts, we can close this gap at the LHeC at 95 % confidence level, even in the presence of a reasonable systematic error. More sophisticated signal selection strategies and detailed knowledge of the detector can be used to improve the prospects of signal detection.
Cite
@article{arxiv.1812.01568,
title = {Closing the light gluino gap with electron-proton colliders},
author = {David Curtin and Kaustubh Deshpande and Oliver Fischer and Jose Zurita},
journal= {arXiv preprint arXiv:1812.01568},
year = {2019}
}
Comments
7 pages, 5 figures