English

Stop Coannihilation in the CMSSM and SubGUT Models

High Energy Physics - Phenomenology 2018-07-04 v1

Abstract

Stop coannihilation may bring the relic density of heavy supersymmetric dark matter particles into the range allowed by cosmology. The efficiency of this process is enhanced by stop-antistop annihilations into the longitudinal (Goldstone) modes of the WW and ZZ bosons, as well as by Sommerfeld enhancement of stop annihilations and the effects of bound states. Since the couplings of the stops to the Goldstone modes are proportional to the trilinear soft supersymmetry-breaking AA-terms, these annihilations are enhanced when the AA-terms are large. However, the Higgs mass may be reduced below the measured value if the AA-terms are too large. Unfortunately, the interpretation of this constraint on the stop coannihilation strip is clouded by differences between the available Higgs mass calculators. For our study, we use as our default calculator FeynHiggs 2.13.0, the most recent publicly available version of this code. Exploring the CMSSM parameter space, we find that along the stop coannihilation strip the masses of the stops are severely split by the large AA-terms. This suppresses the Higgs mass drastically for μ\mu and A0>0A_0 > 0, whilst the extent of the stop coannihilation strip is limited for A0<0A_0 < 0 and either sign of μ\mu. However, in sub-GUT models, reduced renormalization-group running mitigates the effect of the large AA-terms, allowing larger LSP masses to be consistent with the Higgs mass calculation. We give examples where the dark matter particle mass may reach 8\gtrsim 8 TeV.

Keywords

Cite

@article{arxiv.1801.09855,
  title  = {Stop Coannihilation in the CMSSM and SubGUT Models},
  author = {John Ellis and Jason L. Evans and Feng Luo and Keith A. Olive and Jiaming Zheng},
  journal= {arXiv preprint arXiv:1801.09855},
  year   = {2018}
}

Comments

26 pages, 28 figures

R2 v1 2026-06-23T00:02:52.901Z