从计U(1)对称性看手性暗物质和辐射中微子质量

K. S. Babu, Shreyashi Chakdar, Vishnu P. K
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引用次数: 0

摘要

我们提出了一类基于作用于暗部的手性$U(1)$规对称的暗物质模型。手性$U(1)$保护了暗部门费米子的质量,同时也凭借不间断的离散$mathcal{Z}_N$规对称性保证了暗物质粒子的稳定性。我们识别了38个这样的$U(1)$模型,它们是手性$SU(3) \timesSU(2)$规对称的后代,由一组具有简单$U(1)$电荷分配的最小费米子组成。我们展示了如何利用这些模型,通过暗部门粒子在环图内部循环的光致机制,以辐射方式产生较小的马约拉纳中微子质量。我们还进一步探讨了这类模型中最简单模型的现象学,即假设马约拉纳费米子、狄拉克费米子或标量场是暗物质候选者,并展示了各种方案与遗迹密度和直接探测实验的约束的一致性。
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Chiral dark matter and radiative neutrino masses from gauged U(1) symmetry
We propose a class of dark matter models based on a chiral $U(1)$ gauge symmetry acting on a dark sector. The chiral $U(1)$ protects the masses of the dark sector fermions, and also guarantees the stability of the dark matter particle by virtue of an unbroken discrete $\mathcal{Z}_N$ gauge symmetry. We identify 38 such $U(1)$ models which are descendants of a chiral $SU(3) \times SU(2)$ gauge symmetry, consisting of a minimal set of fermions with simple $U(1)$ charge assignments. We show how these models can also be utilized to generate small Majorana neutrino masses radiatively via the scotogenic mechanism with the dark sector particles circulating inside loop diagrams. We further explore the phenomenology of the simplest model in this class, which admits a Majorana fermion, Dirac fermion or a scalar field to be the dark matter candidate, and show the consistency of various scenarios with constraints from relic density and direct detection experiments.
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