English

LHC limits on gluinos and squarks in the minimal Dirac gaugino model

High Energy Physics - Phenomenology 2019-05-08 v2 High Energy Physics - Experiment

Abstract

Dirac gauginos are a well-motivated extension of the MSSM, leading to interesting phenomenological consequences. At the LHC, gluino-pair production is enhanced while squark production is suppressed as compared to the MSSM, and the decay signatures are altered by a more complex chargino and neutralino spectrum. We investigate how this impacts current gluino and squark mass limits from Run~2 of the LHC. Concretely, we compare different assumptions about the electroweak-ino spectrum through four benchmark models paying particular attention to the effect of the trilinear λS\lambda_S coupling, which induces a mass splitting between the mostly bino/U(1) adjoint states. Among other results, we show that for large λS\lambda_S the additional χ~20ffˉχ~10\tilde\chi^0_2\to f\bar f \tilde\chi^0_1 decays somewhat weaken the limits on gluinos (squarks) in the case of heavy squarks (gluinos). Moreover, we compare the limits in the gluino vs. squark mass plane to those obtained in equivalent MSSM scenarios.

Keywords

Cite

@article{arxiv.1812.09293,
  title  = {LHC limits on gluinos and squarks in the minimal Dirac gaugino model},
  author = {Guillaume Chalons and Mark D. Goodsell and Sabine Kraml and Humberto Reyes-González and Sophie L. Williamson},
  journal= {arXiv preprint arXiv:1812.09293},
  year   = {2019}
}

Comments

28 pages, 10 figures, data files available at https://zenodo.org/record/2422747, published version