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Spin gauge fields: From Berry phase to topological spin transport and Hall effects

机译:自旋应变计场:从贝里相到拓扑自旋输运和霍尔效应

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The paper examines the emergence of gauge fields during the evolution of a particle with a spin that is described by a matrix Hamiltonian with n different eigenvalues. It is shown that by introducing a spin gauge field a particle with a spin can be described as a spin multiplet of scalar particles situated in a non-Abelian pure gauge (forceless) field U(n). As the result, one can create a theory of particle evolution that is gauge-invariant with regards to the group U-n(1). Due to this, in the adiabatic (Abelian) approximation the spin gauge field is an analogue of n electromagnetic fields U(I) on the extended phase space of the particle. These fields are force ones, and the forces of their action enter the particle motion equations that are derived in the paper in the general form. The motion equations describe the topological spin transport, pumping, and splitting. The Berry phase is represented in this theory analogously to the Dirac phase of a particle in an electromagnetic field. Due to the analogy with the electromagnetic field, the theory becomes natural in the four-dimensional form. Besides the general theory, the article considers a number of important particular examples, both known and new. (c) 2005 Published by Elsevier Inc.
机译:本文研究了具有自旋的质点演化过程中规范场的出现,该自旋由具有n个不同特征值的矩阵哈密顿量描述。结果表明,通过引入自旋规范场,具有自旋的粒子可以描述为位于非阿贝尔纯规范(无力)场U(n)中的标量粒子的自旋多重峰。结果,可以创建一种关于粒子群U-n(1)不变尺度的粒子演化理论。因此,在绝热(阿贝尔)近似中,自旋规范场是粒子扩展相空间上n个电磁场U(I)的类似物。这些场是力场,它们的作用力进入粒子运动方程,该方程在本文中以一般形式导出。运动方程式描述了拓扑自旋输运,泵送和分裂。在该理论中,贝里相的表示类似于电磁场中粒子的狄拉克相。由于与电磁场的类比,该理论以四维形式变得自然。除一般理论外,本文还考虑了许多重要的特定示例,包括已知的和新的。 (c)2005年由Elsevier Inc.发布。

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