Spin Kinetic Theory—Quantum Kinetic Theory in Extended Phase Space

M. Marklund, J. Zamanian, G. Brodin
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引用次数: 12

Abstract

The concept of phase space distribution functions and their evolution is used in the case of en enlarged phase space. In particular, we include the intrinsic spin of particles and present a quantum kinetic evolution equation for a scalar quasi-distribution function. In contrast to the proper Wigner transformation technique, for which we expect the corresponding quasi-distribution function to be a complex matrix, we introduce a spin projection operator for the density matrix in order to obtain the aforementioned scalar quasi-distribution function. There is a close correspondence between this projection operator and the Husimi (or Q) function used extensively in quantum optics. Such a function is based on a Gaussian smearing of a Wigner function, giving a positive definite distribution function. Thus, our approach gives a Wigner-Husimi quasi-distribution function in extended phase space, for which the reduced distribution function on the Bloch sphere is strictly positive. We also discuss the gauge issue and the fluid moment hierarchy based on such a quantum kinetic theory.
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扩展相空间中的自旋动力学理论-量子动力学理论
在相空间扩大的情况下,采用相空间分布函数及其演化的概念。特别地,我们包含了粒子的本征自旋,并给出了标量准分布函数的量子动力学演化方程。与期望对应的准分布函数为复矩阵的正常Wigner变换技术不同,我们引入了密度矩阵的自旋投影算子以获得上述标量准分布函数。该投影算子与量子光学中广泛使用的Husimi(或Q)函数有密切的对应关系。这样的函数是基于Wigner函数的高斯涂抹,给出一个正定分布函数。因此,我们的方法给出了扩展相空间中的Wigner-Husimi拟分布函数,该函数在Bloch球上的约化分布函数是严格正的。我们还讨论了基于量子动力学理论的量规问题和流体力矩层次。
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Transport Theory and Statistical Physics
Transport Theory and Statistical Physics 物理-物理:数学物理
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