论文标题
较高阶段的暗物质结合状态形成:一种非平衡量子场理论方法
Dark Matter bound-state formation at higher order: a non-equilibrium quantum field theory approach
论文作者
论文摘要
在凝集的场景中,元稳定的暗物质结合状态的形成可以通过与各种标准模型浴粒子的散射有效地发生,在t-nannel中,将在electroweak越过甚至无质量的光子和gluons中交换光玻色子。但是,如果介体无质量,那么这些高阶过程的幅度在内线和外向浴颗粒的共线方向上会发散。为了解决共线差异问题,我们在非平衡量子场理论框架中得出了边界形成碰撞项。主要的结果是更通用的横截面的表达式,该表达式允许以全面的方式计算原始等离子体背景内部的高阶边界形成过程。基于此结果,我们表明,包括浴样品散射在内的临界有限和II)的临时贡献,以及II)在壳上发射上占主导地位,以大于结合能的绝对值大的温度。基于简化的模型,我们证明了这些新效果对热遗物丰度的影响足够重要,足以使研究更现实的凝集场景。
The formation of meta-stable dark matter bound states in coannihilating scenarios could efficiently occur through the scattering with a variety of Standard Model bath particles, where light bosons during the electroweak cross over or even massless photons and gluons are exchanged in the t-channel. The amplitudes for those higher-order processes, however, are divergent in the collinear direction of the in- and out-going bath particles if the mediator is massless. To address the issue of collinear divergences, we derive the bound-state formation collision term in the framework of non-equilibrium quantum field theory. The main result is an expression for a more general cross section, which allows to compute higher-order bound-state formation processes inside the primordial plasma background in a comprehensive manner. Based on this result, we show that next-to-leading order contributions, including the bath-particle scattering, are i) collinear finite and ii) generically dominate over the on-shell emission for temperatures larger than the absolute value of the binding energy. Based on a simplified model, we demonstrate that the impact of these new effects on the thermal relic abundance is significant enough to make it worthwhile to study more realistic coannihilation scenarios.