English

A new approach for detecting compressed bino/wino at the LHC

High Energy Physics - Phenomenology 2015-04-01 v1 High Energy Physics - Experiment

Abstract

In some supersymmetric models like split supersymmetry or models with non-universal gaugino mass, bino (LSP) and winos (NLSP) may have rather small mass splitting in order to provide the correct dark matter relic density through bino/wino co-annihilation. Such a scenario with the compressed bino/wino is difficult to explore at the LHC. In this work we propose to probe this scenario from ppjχ~20χ~1±pp \to j \tilde{\chi}^0_2 \tilde{\chi}^\pm_1 followed by χ~20γχ~10\tilde{\chi}^0_2 \to \gamma \tilde{\chi}^0_1 and χ~1±Wχ~10±νχ~10\tilde{\chi}^\pm_1 \to W^{*}\tilde{\chi}^0_1\to \ell^\pm \nu \tilde{\chi}^0_1 (this method is also applicable to the compressed bino/higgsino scenario). Through a detailed Monte Carlo simulation for both the signal and the backgrounds, we find that for a mass splitting ΔM515\Delta M \sim 5-15 GeV between bino (LSP) and wino (NLSP), the 14 TeV LHC with luminosity of 500fb1fb^{-1} can probe the wino up to 150 GeV (the sensitivity can reach 5σ5\sigma for ΔM=5\Delta M = 5 GeV and 2σ2\sigma for ΔM=15\Delta M = 15 GeV). We also investigate the dark matter detection sensitivities for this scenario and find that the planned XENON-1T(2017) cannot fully cover the parameter space with wino below 150 GeV allowed by relic density and the LUX limits.

Keywords

Cite

@article{arxiv.1409.4533,
  title  = {A new approach for detecting compressed bino/wino at the LHC},
  author = {Chengcheng Han and Lei Wu and Jin Min Yang and Mengchao Zhang and Yang Zhang},
  journal= {arXiv preprint arXiv:1409.4533},
  year   = {2015}
}

Comments

14 pages, 4 figures