Inverse Brillouin Function and Demonstration of Its Application

A. Hayrapetyan
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引用次数: 3

Abstract

The Brillouin function arises in the quantum theory of paramagnetic materials, where it describes the dependence of the magnetization on the externally applied magnetic field and on the temperature of the system. There is no closed form exact analytical expression for the inverse Brillouin function, however, there have been several approximations proposed. In this work, we first compare relative errors and simplicity of several approximations for the inverse Brillouin function. Next, we demonstrate the application of the inverse Brillouin function by determining the Hamiltonian of the system using the simulation data of the magnetization dependence on the temperature. Then we compare the Hamiltonian that was used to set up the simulation with the Hamiltonian determined from the magnetization temperature dependence and an approximation to the inverse Brillouin function. We found that some of the approximations for the inverse Brillouin function can be used to accurately predict the Hamiltonian of the system given the magnetization dependence on temperature.
逆布里渊函数及其应用论证
布里渊函数出现在顺磁性材料的量子理论中,它描述了磁化强度对外加磁场和系统温度的依赖关系。反布里渊函数没有封闭形式的精确解析表达式,然而,已经提出了几种近似。在这项工作中,我们首先比较了反布里渊函数的几种近似的相对误差和简单性。接下来,我们通过利用磁化强度随温度变化的模拟数据确定系统的哈密顿量来演示逆布里渊函数的应用。然后,我们将用于建立模拟的哈密顿量与由磁化温度依赖和近似逆布里渊函数确定的哈密顿量进行了比较。我们发现,在给定磁化强度随温度变化的情况下,一些反布里渊函数的近似可以用来准确地预测系统的哈密顿量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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