论文标题

自我互动的黑暗重子

Self-interacting dark baryons

论文作者

Cline, James M., Perron, Cédrick

论文摘要

使用晶格QCD的结果,可以定量设计黑暗重子的模型,从而导致速度依赖性的自我交叉截面,以匹配解决标准冷暗物质的小规模结构问题所需的值。但是,这种模型中的主要暗物质成分是核子而不是大核,或暗亲酸或原子,其散射特性将不同。我们首先确定类似于QCD的深色SU(3)扇区的参数 - 限制量表$λ$和pion质量$m_π$ - 重现所需的自我交叉横截面。然后我们表明,这些值通常与没有足够稳定的杜特隆结合状态兼容,因此没有导致较重的核,从而确立了情景的一致性,以实现自相互作用的暗核。确定了避免质量脉冲或原子暗物质所需的暗光子质量的范围,并允许动力学混合参数的值。黑暗光子交换可以直接在未来的搜索中直接检测到深色质子。

Using results from lattice QCD, it is possible to quantitatively design models of dark baryons leading to velocity-dependent self-interaction cross sections that match the values needed for solving small-scale structure problems of standard cold dark matter. However it is not obvious that the main dark matter component in such models will be nucleons rather than large nuclei, or dark pions or atoms, whose scattering properties would be different. We first identify the parameters of a dark SU(3) sector analogous to QCD -- the confinement scale $Λ$ and pion mass $m_π$ -- needed to reproduce desired self-interaction cross sections. Then we show that these values can generically be compatible with the absence of a sufficiently stable deuteron bound state, and hence leading to no heavier nuclei, thus establishing the consistency of the scenario for self-interacting dark nucleons. The range of dark photon masses needed to avoid dominant pion or atomic dark matter is determined, as well as allowed values for the kinetic mixing parameter. The dark proton might be detected directly in future searches, by dark photon exchange.

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