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Radiative natural supersymmetry with mixed axion/higgsino cold dark matter

机译:辐射天然超对称与混合轴/ Higgsino冷暗物质

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Models of natural supersymmetry seek to solve the little hierarchy problem by positing a spectrum of light higgsinos ?200 GeV and light top squarks 500 GeV along with very heavy squarks and TeV-scale gluinos. Such models have low electroweak finetuning and are safe from LHC searches. However, in the context of the MSSM, they predict too low a value of m_h and the relic density of thermally produced higgsino-like WIMPs falls well below dark matter (DM) measurements. Allowing for high scale soft SUSY breaking Higgs mass mH_u > m_0 leads to natural cancellations during RG running, and to radiatively induced low finetuning at the electroweak scale. This model of radiative natural SUSY (RNS), with large mixing in the top squark sector, allows for finetuning at the 5-10% level with TeV-scale top squarks and a 125 GeV light Higgs scalar h. If the strong CP problem is solved via the PQ mechanism, then we expect an axion-higgsino admixture of dark matter, where either or both the DM particles might be directly detected.
机译:天然超对称的模型寻求通过用频谱来解决小层次问题的小层次问题,其中200个GEV和浅色顶部划分500 GEV以及非常重的响声和Tev-Scale Gluinos。这种模型具有低电平的Electwook FineTuning,并且可以从LHC搜索安全。然而,在MSSM的上下文中,它们预测M_H的值太低,并且热产生的HIGGSIN型WIMP的遗物密度远低于暗物质(DM)测量。允许高刻度软紫苏断裂HIGGS质量MH_U> M_0在RG运行期间导致自然消除,并在电卷发尺度下辐射地诱导低闪烁。这种辐射自然苏斯(RNS)模型,顶部划分部门大混合,允许在5-10%水平上用Tev-Scale顶缝和125 GEV光Higgs标量H.如果通过PQ机制解决了强CP问题,则我们预计暗物质的轴 - Higgsino混合物,可以直接检测到DM颗粒或两种DM粒子。

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