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首页> 外文期刊>Physical review, D >Kinetic theory for massive spin?1/2 particles from the Wigner-function formalism
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Kinetic theory for massive spin?1/2 particles from the Wigner-function formalism

机译:维格纳函数形式论中大规模自旋1/2粒子的动力学理论

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摘要

We calculate the Wigner function for massive spin ? 1 / 2 particles in an inhomogeneous electromagnetic field to leading order in the Planck constant ? . Going beyond leading order in ? we then derive a generalized Boltzmann equation in which the force exerted by an inhomogeneous electromagnetic field on the particle dipole moment arises naturally. Furthermore, a kinetic equation for this dipole moment is derived. Carefully taking the massless limit we find agreement with previous results. The case of global equilibrium with rotation is also studied. Finally, we outline the derivation of fluid-dynamical equations from the components of the Wigner function. The conservation of total angular momentum is promoted as an additional fluid-dynamical equation of motion. Our framework can be used to study polarization effects induced by vorticity and magnetic field in relativistic heavy-ion collisions.
机译:我们计算大规模旋转的维格纳函数吗?非均匀电磁场中的1/2粒子在Planck常数中达到超前顺序。 。超越领先顺序?然后,我们推导出一个广义的玻耳兹曼方程,其中不均匀电磁场对粒子偶极矩施加的力自然产生。此外,导出了该偶极矩的动力学方程。仔细考虑无质量限制,我们发现与先前的结果一致。还研究了具有旋转的全局平衡的情况。最后,我们概述了从维格纳函数的各个分量推导流体动力学方程的方法。总角动量的守恒作为附加的运动流体动力学方程式得到了推广。我们的框架可用于研究相对论重离子碰撞中由涡度和磁场引起的极化效应。

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