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Surprises from complete vector portal theories: New insights into the dark sector and its interplay with Higgs physics

机译:完整矢量门户理论的惊喜:新的洞察到黑暗部门及其与HIGGS物理的相互作用

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摘要

We study UV complete theories where the standard model (SM) gauge group is extended with a new Abelian U(1)', and the field content is augmented by an arbitrary number of scalar and fermion SM singlets, potentially including dark matter (DM) candidates. Considerations such as classical and quantum gauge invariance of the full theory and S-matrix unitarity, not applicable within a simplified model approach, are shown to have significant phenomenological consequences. The lack of gauge anomalies leads to compact relations among the U(1)' fermion charges and puts a lower bound on the number of dark fermions. Contrary to naive expectations, the DM annihilation to Zh is found to be p-wave suppressed, as hinted by the perturbative unitarity of the S-matrix, with dramatic implications for DM thermal relic density and indirect searches. Within this framework, the interplay between dark matter, new vector boson, and Higgs physics is rather natural and generic.
机译:我们研究标准型号(SM)仪表组的UV完整的理论与新的abelian U(1)'延伸,并且场内容由任意数量的标量和费米SM单身增强,可能包括暗物质(DM) 候选人。 诸如全面理论和S矩阵统一性的经典和量子仪不变性的考虑,而不适用于简化的模型方法,被证明具有显着的现象学结果。 缺乏仪表异常导致U(1)'费尔费之间的紧凑关系,并对暗码头的数量表示下限。 与Naive期望相反,发现对Zh的DM湮灭被抑制为P波被抑制,如S-Matrix的扰动统一的暗示,具有对DM热遗物密度和间接搜索的巨大影响。 在此框架内,暗物质,新矢量玻色子和希格斯物理学之间的相互作用是非常自然的和通用的。

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