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Inert doublet model in light of LHC Run I and astrophysical data

机译:符合LHC运行I和天体物理数据的惰性双峰模型

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摘要

We discuss the parameter space of the inert doublet model, a two Higgs doublet model with a dark matter candidate. An extensive set of theoretical and experimental constraints on this model is considered, where both collider as well as astroparticle data limits, the latter in the form of dark matter relic density as well as direct detection, are taken into account. We discuss the effects of these constraints on the parameter space of the model. In particular, we do not require the inert doublet model to provide the full dark matter content of the Universe, which opens up additional regions in the parameter space accessible at collider experiments. The combination of all constraints leads to a relatively strong mass degeneracy in the dark scalar sector for masses greater than or similar to 200 GeV, and to a minimal scale similar to 45 GeV for the dark scalar masses. We also observe a stringent mass hierarchy M-H(+/-) > M-A. We propose benchmark points and benchmark planes for dark scalar pair production for the current LHC run being in compliance with all theoretical as well as experimental bounds.
机译:我们讨论了惰性双峰模型的参数空间,具有暗物质候选的两个HIGGS双峰模型。考虑到了该模型的广泛理论和实验约束,其中碰撞器以及星形数据限制,后者以暗物质遗物密度的形式以及直接检测。我们讨论这些约束对模型参数空间的影响。特别是,我们不需要惰性双峰模型来提供宇宙的完整暗物质内容,这在撞机实验中可访问的参数空间中开辟了额外的区域。所有约束的组合导致大于或类似于200 GEV的质量群体的暗标量扇区的相对强烈的质量退化,并且对于黑标量质量的45 GEV的最小规模。我们还观察了严格的质量层次M-H(+/-)> m-a。我们为当前LHC的暗标量对生产提出了基准点和基准平面,以符合所有理论和实验界限。

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