论文标题
中微子辐射的有效手性磁效应
Effective Chiral Magnetic Effect from Neutrino Radiation
论文作者
论文摘要
我们开发了一种基于对电磁和弱相互作用的不同时间尺度的系统功率计数方案,对接近平衡的电子和中微子的手性动力学理论开发了一种方法。在此框架下,我们在一般非平衡状态下由中微子辐射引起的磁场沿着磁场和能量流。与常规CME不同,这可以被视为有效的手性磁效应(CME),没有手性化学势。我们还以核心偏转超新星的所谓增益区域为例,并发现时间中持续的中微子发射增强的有效CME足够大,可以导致磁性和流体动能的反向级联,并观察到脉冲星踢的尺寸。我们的框架也可能适用于其他涉及非平衡中微子的密集系统。
We develop an approach to chiral kinetic theories for electrons close to equilibrium and neutrinos away from equilibrium based on a systematic power counting scheme for different timescales of electromagnetic and weak interactions. Under this framework, we derive electric and energy currents along magnetic fields induced by neutrino radiation in general nonequilibrium states. This may be regarded as an effective chiral magnetic effect (CME), which is present without a chiral chemical potential, unlike the conventional CME. We also consider the so-called gain region of core-collapse supernovae as an example and find that the effective CME enhanced by persistent neutrino emission in time is sufficiently large to lead to the inverse cascade of magnetic and fluid kinetic energies and observed magnitudes of pulsar kicks. Our framework may also be applicable to other dense-matter systems involving nonequilibrium neutrinos.