Spin diffusion and relaxation in three-dimensional isotropic Heisenberg antiferromagnets

被引:0
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作者
K. A. Kikoin
M. N. Kiselev
机构
[1] Kurchatov Institute Russian Scientific Center,Laboratoire Léon Brillouin
[2] CEA-CNRS,undefined
[3] CE Saclay,undefined
关键词
Elementary Particle; Kinetic Parameter; Frequency Dependence; Relaxation Process; Renormalization Group;
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摘要
A theory is proposed for kinetic effects in isotropic Heisenberg antiferromagnets at temperatures above the Néel point. The scaling behavior of the generalized coefficient of spin diffusion and relaxation constant in the paramagnetic phase is studied in terms of the approximation of interacting modes. It is shown that the kinetic coefficients in an antiferromagnetic system are singular in the fluctuation region. The corresponding critical indices for diffusion and relaxation processes are calculated. The scaling dimensionality of the kinetic coefficients agrees with the predictions of dynamic similarity theory and a renormalization group analysis. The proposed theory can be used to study the momentum and frequency dependence of the kinetic parameters, and to determine the form of the scaling functions. The role of nonlocal correlations and spin-fluid effects in magnetic systems is discussed.
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页码:994 / 1000
页数:6
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