论文标题

相对论隐藏区域颗粒对物质功率谱的影响

The Effects Of Relativistic Hidden Sector Particles on the Matter Power Spectrum

论文作者

Ganjoo, Himanish, Erickcek, Adrienne L., Lin, Weikang, Mack, Katherine J.

论文摘要

如果暗物质位于最小与标准模型的隐藏扇区中,那么隐藏扇区内的另一个粒子可能会暂时占主导地位的早期宇宙的能量密度,从而导致早期的物质主导的时代(EMDE)。在EMDE期间,物质扰动的增长比在辐射统治时期的速度更快,这比在标准宇宙学场景中所形成的时间早得多。这些Microhalos增强了暗​​物质歼灭信号,但是这种提升对物质功率谱的小规模切割非常敏感。如果暗物质足够冷,则该截止是由主导隐藏扇区的粒子的相对论压力来设定的。在这种情况下,我们确定了暗物质密度扰动的演变,在EMDE结束时获得了功率谱。我们分析了由于主要隐藏扇形粒子的相对论压力而抑制扰动的抑制,并表达了截止尺度和峰值尺度,而该粒子的性质最大化了物质功率谱。我们还提供传输功能,以将物质功率谱与由主要的隐藏扇区粒子的压力与由冷隐藏扇形导致的物质功率谱相关的小规模截止。这些传输功能有助于用最初的隐藏扇区在EMDE方案中快速计算准确的物质功率光谱,并允许我们确定哪种模型可显着增强微荷兰的丰富度。

If dark matter resides in a hidden sector minimally coupled to the Standard Model, another particle within the hidden sector might dominate the energy density of the early universe temporarily, causing an early matter-dominated era (EMDE). During an EMDE, matter perturbations grow more rapidly than they would in a period of radiation domination, which leads to the formation of microhalos much earlier than they would form in standard cosmological scenarios. These microhalos boost the dark matter annihilation signal, but this boost is highly sensitive to the small-scale cut-off in the matter power spectrum. If the dark matter is sufficiently cold, this cut-off is set by the relativistic pressure of the particle that dominates the hidden sector. We determine the evolution of dark matter density perturbations in this scenario, obtaining the power spectrum at the end of the EMDE. We analyze the suppression of perturbations due to the relativistic pressure of the dominant hidden sector particle and express the cut-off scale and peak scale for which the matter power spectrum is maximized in terms of the properties of this particle. We also supply transfer functions to relate the matter power spectrum with a small-scale cut-off resulting from the pressure of the dominant hidden sector particle to the matter power spectrum that results from a cold hidden sector. These transfer functions facilitate the quick computation of accurate matter power spectra in EMDE scenarios with initially hot hidden sectors and allow us to identify which models significantly enhance the microhalo abundance.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源