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Freezing-in dark matter through a heavy invisible Z′

机译:通过沉重的不可见Z'冻结暗物质

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We demonstrate that in a class of the U ( 1 ) ′ extension of the Standard Model (SM), under which all the Standard Model matter fields are uncharged and the additional neutral gauge boson Z ′ couples to a set of heavy nonstandard fermions, dark matter (DM) production mediated by Z ′ can proceed through the generation of generalized Chern-Simons (GCS) couplings. The origin of the GCS terms is intimately connected to the cancellation of gauge anomalies. We show that the DM production cross section triggered by GCS couplings is sufficient even for an intermediate scale Z ′ . A large range of DM and Z ′ masses is then allowed for reasonably high reheating temperature ( T RH ? 10 10 ? ? GeV ). This type of scenario opens up a new paradigm for unified models. We also study the UV completion of such effective field theory constructions, augmenting it by a heavy fermionic spectrum. The latter, when integrated out, generates the GCS-like terms and provides a new portal to the dark sector. The presence of a number of derivative couplings in the GCS-like operators induces a high temperature dependence in the DM production rate. The mechanism has novel consequences and leads to a new reheating dependence of the relic abundance.
机译:我们证明,在标准模型(SM)的U(1)'扩展类中,所有标准模型物质场都不带电,并且附加的中性号玻色子Z'耦合到一组重的非标准费米子上Z'介导的物质(DM)产生可以通过广义Chern-Simons(GCS)耦合的产生来进行。 GCS术语的起源与规范异常的消除密切相关。我们表明,即使对于中间规模Z',由GCS耦合触发的DM生产横截面也足够。然后,允许较大范围的DM和Z'质量,以实现较高的再加热温度(T RH≥10 10≥GeV)。这种情况为统一模型开辟了新的范例。我们还研究了这种有效场论构造的​​紫外线完成度,并​​通过重铁离子光谱增强了紫外线的完成度。后者整合后会生成类似GCS的字词,并提供了通往暗区的新门户。在类似GCS的算子中存在许多微分耦合,会引起DM生产率的高温依赖性。该机制具有新的结果,并导致对文物丰度的新的重新加热依赖性。

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