论文标题
完成量子静脉生成的完整领先标准模型校正
Complete leading-order standard model corrections to quantum leptogenesis
论文作者
论文摘要
在标准模型的框架内,具有三个额外的重大主要中微子的热量生成,提供了一种有吸引力的场景,以解释宇宙中观察到的重子不对称性。它基于标准模型颗粒的热浴中Majorana中微子的不平衡衰减,在完全量子场理论形式主义中,它是通过求解Kadanoff-Baym方程来获得的。到目前为止,包括瘦粒子和希格斯颗粒的领先两环贡献,但尚未计算校正。这些以三环级别输入,但是在某些运动学方面,需要重新调整以无限的循环顺序,以使结果在量规耦合中领先顺序。在这项工作中,我们将这种重新召集应用于Lepton数量密度的计算。与量子玻尔兹曼方程相比,最简单的“香草瘦化生成”方案的完整结果是增加了$ \ Mathcal {O}(1)$,并且首次允许对所有理论上的不确定性进行估计。此步骤完成了瘦化生成的量子理论,并构成了定量评估的基础,以及对其他情况的扩展。
Thermal leptogenesis, in the framework of the standard model with three additional heavy Majorana neutrinos, provides an attractive scenario to explain the observed baryon asymmetry in the universe. It is based on the out-of-equilibrium decay of Majorana neutrinos in a thermal bath of standard model particles, which in a fully quantum field theoretical formalism is obtained by solving Kadanoff-Baym equations. So far, the leading two-loop contributions from leptons and Higgs particles are included, but not yet gauge corrections. These enter at three-loop level but, in certain kinematical regimes, require a resummation to infinite loop order for a result to leading order in the gauge coupling. In this work, we apply such a resummation to the calculation of the lepton number density. The full result for the simplest "vanilla leptogenesis" scenario is by $\mathcal{O}(1)$ increased compared to that of quantum Boltzmann equations, and for the first time permits an estimate of all theoretical uncertainties. This step completes the quantum theory of leptogenesis and forms the basis for quantitative evaluations, as well as extensions to other scenarios.