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Ergodic theorem for an impurity spin subsystem in a paramagnet

机译:顺磁体中杂质自旋子系统的遍历定理

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摘要

A model for verifying and developing the fundamental ideas underlying the ergodic hypothesis is proposed. The model describes the dynamics of the spin subsystem formed by impurity charges with spin I and a small g factor in a crystal immersed in a strong constant external magnetic field under conditions where the spin system of the nuclei in the crystal is isolated from the other degrees of freedom. The additive integral of motion is the projection of the total spin of the subsystem onto the external field. Attentions is focused mainly on the case of I = 1/2. It is shown that the ergodic hypothesis holds if the correlation radius is finite in the initial state and that the ergodic hypothesis is violated if the initial state is sharply localized or has global correlation. The nonergodicity of the ~8Li-~6Li spin subsystem, which is a convenient object for experimental investigations of spin dynamics, is revealed. An estimate is obtained for the time for transition from a sharply localized disturbance of the canonical distribution to a quasiequilibrium state.
机译:提出了一个模型来验证和发展遍历假说的基本思想。该模型描述了在晶体中原子核的自旋系统与其他度数隔离的条件下,由浸入强恒定恒定外部磁场的晶体中具有自旋I和小g因子的杂质电荷形成的自旋子系统的动力学自由。运动的累加积分是子系统的总旋转量到外部场上的投影。注意主要集中在I = 1/2的情况下。结果表明,如果在初始状态下相关半径是有限的,则遍历假说成立;如果初始状态急剧地局部化或具有全局相关性,则违反了遍历假说。揭示了〜8Li-〜6Li自旋子系统的非遍历性,这是自旋动力学实验研究的便利对象。获得从正态分布的急剧局部扰动过渡到准平衡态的时间的估计。

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