论文标题

两个组成暗物质模型的现象学

Phenomenology of a two-component dark matter model

论文作者

Kim, Yeong Gyun, Lee, Kang Young, Nam, Soo-hyeon

论文摘要

我们研究了一个两部分的暗物质模型,该模型由隐藏扇区中的新U(1)量规组组成,该模型由Dirac Fermion和一个复杂的标量组成。深色费米恩(Dark Fermion)扮演着暗物质的主要成分,它解释了宇宙的DM遗物密度。它与普通标准模型颗粒没有直接耦合,因此从直接的DM检测实验中逃避了强限制。黑暗的费米昂通过浅色的黑暗量规玻色子进行了自我互动,可以解决该模型可以解决宇宙的小规模结构问题。与标准模型部门相互作用的光线深色仪表也稳定,并组成亚尺寸的DM分量。我们研究了当前实验约束和现象学界限允许的模型参数空间。我们还讨论了未来实验(例如船,沙丘和ILC)的敏感性,以获取的参数空间。

We study a two-component dark matter model consisting of a Dirac fermion and a complex scalar charged under new U(1) gauge group in the hidden sector. The dark fermion plays the dominant component of dark matter which explains the measured DM relic density of the Universe. It has no direct coupling to ordinary standard model particles, thus evading strong constraints from the direct DM detection experiments. The dark fermion is self-interacting through the light dark gauge boson and it would be possible to address that this model can be a resolution to the small scale structure problem of the Universe. The light dark gauge boson, which interacts with the standard model sector, is also stable and composes the subdominant DM component. We investigate the model parameter space allowed by current experimental constraints and phenomenological bounds. We also discuss the sensitivity of future experiments such as SHiP, DUNE and ILC, for the obtained allowed parameter space.

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