论文标题

Sleptonic Susy:从UV框架到IR现象学

Sleptonic SUSY: From UV Framework to IR Phenomenology

论文作者

Agashe, Kaustubh, Ekhterachian, Majid, Liu, Zhen, Sundrum, Raman

论文摘要

We study an attractive scenario, "Sleptonic SUSY", which reconciles the $125$ GeV Higgs scalar and the non-observation of superpartners thus far with potentially pivotal roles for slepton phenomenology: providing viable ongoing targets for LHC discovery, incorporating a co-annihilation partner for detectable thermal relic dark matter, and capable of mediating the potential muon $g-2$异常。这是通过适度的分层频谱,Sub-Tev Sleptons和eletroweakinos以及其他新状态的多型TEV质量来实现的。我们研究了基于高维隔离的紫外线MSSM MSSM实现的新元素,以及由此产生的Gaugino介入,超收费$ D $ term Term Permer-Term Permiation和Higgs降级之间的协同作用,以便更多地捕捉可能性范围。该框架通过和谐地解决了超对称范式的口味,CP和$μbμ$问题而脱颖而出。我们讨论了它的扩展到Orbifold胆量,包括量规偶联和$ b $ -tau统一。我们还开发了一个具有额外的希格斯田地的非最小模型,其中电动真空在宇宙学上更容易稳定,而不是衰减,从而使收费的真空吸尘器比单独使用MSSM更广泛。我们调查了LHC和Future Colleders可能的丰富信号,涵盖了$ r $ r $ -Parity的保护和违规以及暗物质检测。虽然多型TEV挤压暗示了一些层次结构问题,但有趣的是,参数空间的小变化可改善自然性,从而导致急剧过渡到electroweak Prestrestion或打破电荷。在多元宇宙的环境中,可以用“危险的生活原则”来解释谦虚的不自然性。

We study an attractive scenario, "Sleptonic SUSY", which reconciles the $125$ GeV Higgs scalar and the non-observation of superpartners thus far with potentially pivotal roles for slepton phenomenology: providing viable ongoing targets for LHC discovery, incorporating a co-annihilation partner for detectable thermal relic dark matter, and capable of mediating the potential muon $g-2$ anomaly. This is accomplished by a modestly hierarchical spectrum, with sub-TeV sleptons and electroweakinos and with multi-TeV masses for the other new states. We study new elements in the UV MSSM realization of Sleptonic SUSY based on higher-dimensional sequestering and the synergy between the resulting gaugino-mediation, hypercharge $D$-term mediation and Higgs-mediation of SUSY-breaking, so as to more fully capture the range of possibilities. This framework stands out by harmoniously solving the flavor, CP and $μ- Bμ$ problems of the supersymmetric paradigm. We discuss its extension to orbifold GUTs, including gauge-coupling and $b$-tau unification. We also develop a non-minimal model with extra Higgs fields, in which the electroweak vacuum is more readily cosmologically stable against decay to a charge-breaking vacuum, allowing a broader range of sleptonic spectra than in the MSSM alone. We survey the rich set of signals possible at the LHC and future colliders, covering both $R$-parity conservation and violation, as well as for dark matter detection. While the multi-TeV squarks imply a Little Hierarchy Problem, intriguingly, small changes in parameter space to improve naturalness result in dramatic phase transitions to either electroweak-preservation or charge-breaking. In a Multiverse setting, the modest unnaturalness may then be explained by the "principle of living dangerously".

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