STUDY OF EXTRAORDINARY PHASE TRANSITION IN THIN ANTI-FERROMAGNETIC FILMS: COMPUTER SIMULATION

Q4 Mathematics
S.V. Belim, E.V. Bogdanova
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引用次数: 0

Abstract

In the article, an extraordinary phase transition in thin antiferromagnetic films was investigated by computer modeling. The simulation uses the Ising model and Metropolis algorithm. Cubic crystal lattice epitaxial films containing multiple monoatomic layers are studied in the paper. The difference in the value for the exchange integrals in the bulk and on the surface of the film is a condition for the appearance of surface and extraordinary phase transitions. The film shall contain at least eight monoatomic layers for appearance of surface and extraordinary phase transitions. The extraordinary phase transition is investigated at different film thicknesses. Magnetic susceptibility demonstrates a logarithmic dependence on Neel temperature near the phase transition point. The dependence of the critical exponent of magnetic susceptibility on film thickness is calculated for the logarithmic phase.
反铁磁薄膜中异常相变的研究:计算机模拟
本文用计算机模拟的方法研究了反铁磁薄膜中的异常相变。仿真采用Ising模型和Metropolis算法。本文研究了含有多个单原子层的立方晶格外延薄膜。块体和薄膜表面交换积分值的差异是表面相变和异常相变出现的条件。薄膜应包含至少8个单原子层,用于表面外观和特殊的相变。研究了不同薄膜厚度下的异常相变。磁化率与相变点附近的尼尔温度呈对数关系。在对数相位下,计算了磁化率临界指数与薄膜厚度的关系。
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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来源期刊
Chelyabinsk Physical and Mathematical Journal
Chelyabinsk Physical and Mathematical Journal Mathematics-Mathematics (all)
CiteScore
0.90
自引率
0.00%
发文量
11
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