论文标题
宇宙文物的动量分布:改进的分析
Momentum distributions of cosmic relics: Improved analysis
论文作者
论文摘要
我们求解了耦合动量依赖性的玻尔兹曼方程来用于宇宙遗物颗粒的相空间分布,而无需诉诸于假设动力学平衡或忽略反向散射或弹性相互作用的近似值。我们的方法可以对精确的数值计算进行评估。为了进行测试,我们考虑了两个基准模型,其中暗物质分布函数的动量依赖性可能很重要:HIGGS共振附近的真实单线标量扩展和带有单型标量介体的无菌中微子暗物质模型。 Singlet标量示例表明,即使在尖锐的共鸣附近,动力学平衡也可能令人惊讶。但是,在极端情况下,综合方法可能会低估遗物密度多达40%。在无菌中微子暗物质模型中,我们研究了先前忽略的弹性相互作用和过程与初始状态无菌中微子的包含如何影响其产生分布的非热质性质。在这里,效果被忽略不计,证明了早期预测的鲁棒性。
We solve coupled momentum-dependent Boltzmann equations for the phase space distribution of cosmic relic particles, without resorting to approximations of assuming kinetic equilibrium or neglecting backscattering or elastic interactions. Our method is amendable to precision numerical computations. To test it, we consider two benchmark models where the momentum dependence of dark matter distribution function is potentially important: a real singlet scalar extension near the Higgs resonance and a sterile neutrino dark matter model with a singlet scalar mediator. The singlet scalar example shows that the kinetic equilibrium may hold surprisingly well even near sharp resonances. However, the integrated method may underestimate the relic density by up to 40% in extreme cases. In the sterile neutrino dark matter model, we studied how the inclusion of previously ignored elastic interactions and processes with initial state sterile neutrinos could affect the nonthermal nature of their resulting distributions. Here the effects turned out to be negligible, proving the robustness of the earlier predictions.