Linear irreversible processes and spin relaxation

R. Lenk
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引用次数: 1

Abstract

The standard theories of spin relaxation have not sufficiently emphasised the connection of this phenomenon to other linear irreversible processes and the role of entropy production has also not been clearly discussed.

In order to contribute to this problem, we start here with the linear relation between the generalised fluxes Ji and generalised forces Xi and we show the verification of the bilinear relation in fluxes and forces for the dissipation function Ψd In this connection a general expression for the diffusion-like equation is also calculated.

Furthermore, the phenomenological relaxation equation is developed, which shows the proportionalityof therelaxation rate 1/T1 to the phenomenological coefficient LE. The quantum-statistical treatment of relaxation starts also from the entropy production principle and one obtains a quantum-statistical alternative of the phenomenological coefficient LE, which yields finally the molecular expression for the relaxation rate 1/T1 . This result has been used for the treatment of spin-lattice relaxation by dipole-dipole interaction and one has obtained the same relation for 1/T1, relaxation rate, as by other methods, using different starting points.

线性不可逆过程和自旋弛豫
自旋弛豫的标准理论没有充分强调这种现象与其他线性不可逆过程的联系,熵产生的作用也没有得到清楚的讨论。进一步,建立了唯象松弛方程,该方程显示了弛豫速率1/T1与唯象系数LE的比例关系。弛豫的量子统计处理也从熵产生原理出发,得到了现象学系数LE的量子统计替代,最终得到了弛豫速率1/T1的分子表达式。这一结果已用于用偶极子-偶极子相互作用处理自旋-晶格弛豫,并得到了与使用不同起始点的其他方法相同的1/T1弛豫率关系。
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