论文标题

重力诱导生成的动力演化

Dynamical Evolution of Gravitational Leptogenesis

论文作者

McDonald, Jamie I., Shore, Graham M.

论文摘要

辐射诱导的引力诱导生成是解释观察到的宇宙物质抗对称性的潜在机制。量子回路水平的重力潮汐效应修改了弯曲时空中瘦素的动力学,并且可以在低能的有效作用SEFF中编码。在先前的工作中已经显示,在高尺度的BSM理论中,CP曲率诱导的Seff中的相互作用在不断扩展的宇宙中修改了Leptons和antileptons的分散关系,从而产生了有效的化学潜力和非呈现平衡的Lepton-lepton-antilepton不对称。在本文中,证明CP甚至曲率相互作用会破坏Lepton的电流保守性,并随着宇宙的扩展而修改Lepton数量密度的演变。这些效果是在广义的玻尔兹曼方程中实现的,用于追踪不同宇宙学场景中Lepton数量密度的动态演化。该理论预测了在宇宙进化的很早时期,潜在的重力引起的Lepton-antilepton不对称性。

Radiatively-induced gravitational leptogenesis is a potential mechanism to explain the observed matter-antimatter asymmetry of the universe. Gravitational tidal effects at the quantum loop level modify the dynamics of the leptons in curved spacetime and may be encoded in a low-energy effective action Seff. It has been shown in previous work how in a high-scale BSM theory the CP odd curvature-induced interactions in Seff modify the dispersion relations of leptons and antileptons differently in an expanding universe, giving rise to an effective chemical potential and a non-vanishing equilibrium lepton-antilepton asymmetry. In this paper, the CP even curvature interactions are shown to break lepton number current conservation and modify the evolution of the lepton number density as the universe expands. These effects are implemented in a generalised Boltzmann equation and used to trace the dynamical evolution of the lepton number density in different cosmological scenarios. The theory predicts a potentially significant gravitationally-induced lepton-antilepton asymmetry at very early times in the evolution of the universe.

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