论文标题

各向同性无碰撞等离子体中波动的动量,角动量和旋转

Momentum, angular momentum, and spin of waves in an isotropic collisionless plasma

论文作者

Bliokh, Konstantin Y., Bliokh, Yury P.

论文摘要

我们在各向同性非偏移无碰撞的电子等离子体中检查了线性波的动量和角动量(包括自旋)特性。我们专注于与均匀介质相对于波场的平移和旋转不变性相关的保守量;这些有时被称为伪摩托马。动量和角动量密度有两种类型:(i)与能量通量密度和对称(Belinfante)能量 - 能量 - 能量 - 能量量张量相关的动力动量,以及(ii)与保守的Noether电流和规范的能量孔张量相关的规范。我们发现,Langmuir波的规范动量和自旋密度与流体或气体中的声波相似。它们通过电子速度场表达。反过来,电磁波的动量和自旋密度可以用自由空间电磁场已知的形式写成,仅涉及电场,或者在涉及电场和磁场的双对称形式中,以及等离子的有效介电性。我们在现象学宏观方法和耦合电磁场和电子的微观拉格朗日田地理论中得出了这些特性。最后,我们探索了运输和电动力现象中规范动量和自旋密度的含义:Stokes漂移,波诱导的磁化强度(反向法拉第效应),等等。

We examine the momentum and angular momentum (including spin) properties of linear waves, both longitudinal (Langmuir) and transverse (electromagnetic), in an isotropic nonrelativistic collisionless electron plasma. We focus on conserved quantities associated with the translational and rotational invariance of the wave fields with respect to the homogeneous medium; these are sometimes called pseudo-momenta. There are two types of the momentum and angular momentum densities: (i) the kinetic ones associated with the energy flux density and the symmetrized (Belinfante) energy-momentum tensor and (ii) the canonical ones associated with the conserved Noether currents and canonical energy-momentum tensor. We find that the canonical momentum and spin densities of Langmuir waves are similar to those of sound waves in fluids or gases; they are expressed via the electron velocity field. In turn, the momentum and spin densities of electromagnetic waves can be written either in the forms known for free-space electromagnetic fields, involving only the electric field, or in the dual-symmetric forms involving both electric and magnetic fields, as well as the effective permittivity of plasma. We derive these properties both within the phenomenological macroscopic approach and microscopic Lagrangian field theory for the coupled electromagnetic fields and electrons. Finally, we explore implications of the canonical momentum and spin densities in transport and electrodynamic phenomena: the Stokes drift, the wave-induced magnetization (inverse Faraday effect), etc.

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