Hydrodynamical approach to chirality production during axion inflation

Gorbar, E. V., Momot, A. I., Prikhodko, O. O., Teslyk, O. M.
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Abstract

We study chirality production in the pseudoscalar inflation model of magnetogenesis taking into account the Schwinger effect and particle collisions in plasma in the relaxation time approximation. We consider the Schwinger production of one Dirac fermion species by an Abelian gauge field in two cases: (i) the fermion carries only the weak charge with respect to the U(1) group and (ii) it is also charged with respect to another strongly coupled gauge group. While the gradient-expansion formalism is employed for the description of the evolution of gauge field, plasma is described by hydrodynamical approach which allows us to determine the number, energy density, and chirality of produced fermions. It is found that while chirality production is very efficient for both, weakly and strongly interacting fermions, the resulting gauge field is typically stronger in the case of strongly interacting fermions due to suppression of the Schwinger conductivity by particle collisions.
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轴子膨胀过程中手性产生的流体力学方法
在弛豫时间近似下,考虑了等离子体中的Schwinger效应和粒子碰撞,研究了磁发生赝标量暴胀模型中的手性产生。我们考虑了一个狄拉克费米子在阿贝尔规范场中的Schwinger产生,在两种情况下:(i)费米子对U(1)群只带弱电荷,(ii)它对另一个强耦合规范群也带电荷。在描述规范场演化时采用梯度展开的形式,而等离子体的描述则采用流体力学的方法,这使我们能够确定产生的费米子的数量、能量密度和手性。研究发现,虽然手性的产生对于弱和强相互作用的费米子都是非常有效的,但由于粒子碰撞抑制了Schwinger电导率,因此在强相互作用的费米子中产生的规范场通常更强。
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