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首页> 外文期刊>Progress in Particle and Nuclear Physics >Dark matter studies entrain nuclear physics
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Dark matter studies entrain nuclear physics

机译:暗物质研究带动核物理

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摘要

We review theoretically well-motivated dark-matter candidates, and pathways to their discovery, in the light of recent results from collider physics, astrophysics, and cosmology. Taken in aggregate, these encourage broader thinking in regards to possible dark-matter candidates - dark-matter need not be made of "WIMPs", i.e., elementary particles with weak-scale masses and interactions. Facilities dedicated to nuclear physics are well-poised to investigate certain non-WIMP models. In parallel to this, developments in observational cosmology permit probes of the relativistic energy density at early epochs and thus provide new ways to constrain dark-matter models, provided nuclear physics inputs are sufficiently well-known. The emerging confluence of accelerator, astrophysical, and cosmological constraints permit searches for dark-matter candidates in a greater range of masses and interaction strengths than heretofore possible.
机译:我们根据对撞物理学,天体物理学和宇宙学的最新结果,回顾了理论上动机良好的暗物质候选物以及发现它们的途径。总的来说,这些鼓励关于可能的暗物质候选者的更广泛的思考-暗物质不必由“ WIMP”构成,即具有小尺度质量和相互作用的基本粒子。专门用于核物理的设施可以很好地研究某些非WIMP模型。与此同时,观测宇宙学的发展允许在较早时期探测相对论能量密度,从而提供了限制暗物质模型的新方法,只要核物理学的输入是众所周知的。加速器,天体物理学和宇宙学约束的新出现的融合使得人们可以寻找比以往更大质量和相互作用强度的暗物质候选物。

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