论文标题

在最小的Scotogenic模型中可观察的重力波

Observable Gravitational Waves in Minimal Scotogenic Model

论文作者

Borah, Debasish, Dasgupta, Arnab, Fujikura, Kohei, Kang, Sin Kyu, Mahanta, Devabrat

论文摘要

我们根据需要在未来计划的基于计划的空间实验的实验中,仔细研究了所研究的最低术的暗物质(DM)和辐射性中微子质量的最小苏格兰模型和辐射性中微子质量。标量DM方案类似于标准模型的惰性标量双线扩展,其中强的一阶EWPT有利于DM的低质量质量状态的一部分,这被最新的直接检测范围散布。在Fermion DM方案中,我们获得了较新的参数空间区域,该区域有利于强大的一阶EWPT,因为在惰性标量双线内对质量排序的限制得到了放松。虽然这种嗜动力费用DM仍然可以免受严格的直接检测边界的保护,但新近允许的低质量标量可能会留下诱人的签名,并且还可以在未来的实验中诱发带电的Lepton风味违规。尽管我们获得了满足DM遗物的参数空间的新区域,但具有可检测到的重力波,轻中微子质量和其他相关约束的强大一阶EWPT,我们还通过在有效的有限温度潜力中纳入适当的重新点燃效应,对相似模型的先前分析进行改进。

We scrutinise the widely studied minimal scotogenic model of dark matter (DM) and radiative neutrino mass from the requirement of a strong first order electroweak phase transition (EWPT) and observable gravitational waves at future planned space based experiments. The scalar DM scenario is similar to inert scalar doublet extension of standard model where a strong first order EWPT favours a portion of the low mass regime of DM which is disfavoured by the latest direct detection bounds. In the fermion DM scenario, we get newer region of parameter space which favours strong first order EWPT as the restriction on mass ordering within inert scalar doublet gets relaxed. While such leptophilic fermion DM remains safe from stringent direct detection bounds, newly allowed low mass regime of charged scalar can leave tantalising signatures at colliders and can also induce charged lepton flavour violation within reach of future experiments. While we get such new region of parameter space satisfying DM relic, strong first order EWPT with detectable gravitational waves, light neutrino mass and other relevant constraints, we also improve upon previous analysis in similar model by incorporating appropriate resummation effects in effective finite temperature potential.

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