论文标题
来自Eftraton/Moduli衰减的非热热物质:动量分布和放松宇宙学质量
Non-thermal Hot Dark Matter from Inflaton/Moduli Decay: The Momentum Distribution and Relaxing the Cosmological Mass Bound
论文作者
论文摘要
在早期占主导宇宙能量密度的充气或模量的衰变导致了辐射过渡时期的问题。我们认为在此类过渡期间产生的非热无菌暗物质颗粒是衰减产物。这些颗粒具有特征性的能量分布 - 与在物质中发生的衰减相关的宇宙衰减,这些宇宙的宇宙发展为辐射统治。我们主要关注颗粒是热暗物质的情况,并研究它们对宇宙微波背景(CMB)和大规模结构(LSS)的影响,明确考虑了其非热动量分布。我们针对CMB角功率和线性物质功率谱的结果揭示了有趣的特征 - 例如,与当前数据一致的热情况相比,热暗物质质量的数量级高。我们观察到这与以下事实有关:$Δn_{\ rm eff} $和热DM能量密度可以彼此独立,这与热或非共无菌热DM不同。我们还发现CMB中的功能低$ \ ell $角功率可能与热暗物质通过光子 - 巴里昂等离子体的超音速传输相关。
Decay of the inflaton or moduli which dominated the energy density of the universe at early times leads to a matter to radiation transition epoch. We consider non-thermal sterile dark matter particles produced as decay product during such transitions. The particles have a characteristic energy distribution - that associated with decays taking place in a matter dominated universe evolving to radiation domination. We primarily focus on the case when the particles are hot dark matter, and study their effects on the Cosmic Microwave Background (CMB) and Large Scale Structure (LSS), explicitly taking into account their non-thermal momentum distribution. Our results for CMB angular power and linear matter power spectra reveal interesting features - such as an order of magnitude higher values of hot dark matter mass in comparison to the thermal case being consistent with the present data. We observe that this is related to the fact that $ΔN_{\rm eff}$ and the hot DM energy density can be independent of each other unlike the case of thermal or non-resonantly produced sterile hot DM. We also find features in the CMB at low $\ell$ angular power potentially related to supersonic transmission of hot dark matter through the photon-baryon plasma.