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Constraining new physics with searches for long-lived particles: Implementation into SModelS

机译:通过搜索长寿命粒子来约束新物理:SModelS中的实现

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We present the implementation of heavy stable charge particle (HSCP) andR-hadron signatures intoSModelSv1.2. We include simplified-model results from the 8 and 13 TeV LHC and demonstrate their impact on two new physics scenarios motivated by dark matter: the inert doublet model and a gravitino dark matter scenario. For the former, we find sensitivity up to dark matter masses of 580 GeV for small mass splittings within the inert doublet, while missing energy searches are not able to constrain any significant part of the cosmologically preferred parameter space. For the gravitino dark matter scenario, we show that both HSCP andR-hadron searches provide important limits, allowing to constrain the viable range of the reheating temperature.
机译:我们将重稳定电荷粒子(HSCP)和R-强子签名的实现形式引入SModelSv1.2。我们包括来自8 TeV LHC和13 TeV LHC的简化模型结果,并展示了它们对由暗物质激发的两种新物理场景的影响:惰性双峰模型和gravitino暗物质场景。对于前者,我们发现对于惰性二重态内的小质量分裂,暗物质质量高达580 GeV的灵敏度,而缺少能量搜索无法约束宇宙学首选参数空间的任何重要部分。对于引力子暗物质场景,我们表明HSCP和R-强子搜索都提供了重要的限制,从而限制了再加热温度的可行范围。

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