论文标题
根据最新的LHC数据和暗物质约束,重新访问PMSSM中的Gluino质量限制
Revisiting the gluino mass limits in the pMSSM in the light of the latest LHC data and Dark Matter constraints
论文作者
论文摘要
本文的目的是通过使用特定的简化模型分析运行II数据,基于基于几个Ad hoc Spartiles Spectra,即使在公平的通用PMSSM模型中也无法实现,严格约束对从大型强子对撞机(LHC)实验获得的Gluino质量的模型依赖性。我们首先使用$ 1L + JETS + \ MET MET $数据来重新审视Atlas协作所放置的Gluino质量的界限。我们表明,$ m _ {\ wideTilde {g}}} - m _ {\widetildeχ^0_1} $平面在PMSSSM场景中敏感地取决于左右与右quark和较轻的电视台和其他范围较小的范围较小的范围和其他范围的参数。最重要的是,对于higgsino型较轻的电动eakinos(LSP除外),该通道的Gluino质量上的结合实际上消失了。但是,如果此类模型面临着Atlas $ Jets + \ MET $数据,则恢复了相当强的限制。因此,在PMSSM中,涉及少数通道的分析可能会提供更可靠的质量限制。我们还对已经研究的模型进行了对中性侵黑物质(DM)约束的详细分析,并发现在LSP质量范围很大,可以满足WMAP/PLANCK数据的遗物密度约束,并且满足了LSP-Gluino Coannihilation在Relic密度生产中起重要作用。我们还检查了此处研究的直接DM检测和LHC约束的模型的同时兼容性。
The purpose of this paper is to examine the model dependence of the stringent constraints on the gluino mass obtained from the Large Hadron Collider (LHC) experiments by analyzing the Run II data using specific simplified models based on several ad hoc sparticle spectra which cannot be realized even in the fairly generic pMSSM models. We first revisit the bounds on the gluino mass placed by the ATLAS collaboration using the $1l + jets + \met$ data. We show that the exclusion region in the $M_{\widetilde{g}}-M_{\widetildeχ^0_1}$ plane in the pMSSM scenario sensitively depends on the mass hierarchy between the left and right squarks and composition of the lighter electroweakinos and, to a lesser extent, other parameters. Most importantly, for higgsino type lighter electroweakinos (except for the LSP), the bound on the gluino mass from this channel practically disappears. However, if such models are confronted by the ATLAS $jets + \met$ data, fairly strong limits are regained. Thus in the pMSSM an analysis involving a small number of channels may provide more reliable mass limits. We have also performed detailed analyses on neutralino dark matter (DM) constraints in the models we have studied and have found that for a significant range of LSP masses, the relic density constraints from the WMAP/PLANCK data are satisfied and LSP-gluino coannihilation plays an important role in relic density production. We have also checked the simultaneous compatibility of the models studied here with the direct DM detection, and the LHC constraints.