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Invar and covar behavior of ferromagnets with allowance for magnetophonon interaction: A thermodynamic simulation

机译:允许磁浮子相互作用的铁磁体的因瓦和科瓦特性:热力学模拟

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摘要

Based on the Landau theory of second-order phase transitions with allowance for interaction between the magnetic subsystem and crystal lattice (magnetophonon interaction, MPI), a consistent thermodynamic model of the invar and covar behavior of ferromagnets with MPI is constructed. Model calculations carried out at real temperatures show that the invar (covar) behavior of ferromagnets results from an optimal relationship between the thermodynamic parameters of the ferromagnetic phase. It is demonstrated that MPI is a fundamentally important factor responsible for the invar and covar effects. With the thermodynamic parameters obeying a certain relationship, the invar behavior of ferromagnets is predicted in a much wider temperature range than in known invars.
机译:基于Landau的二阶相变理论,并考虑了磁子系统与晶格之间的相互作用(磁浮子相互作用,MPI),构建了具有MPI的铁磁体的殷钢和科瓦合金行为的一致热力学模型。在实际温度下进行的模型计算表明,铁磁体的因瓦(covar)行为是由铁磁相的热力学参数之间的最佳关系引起的。事实证明,MPI是负责invar和covar效应的根本重要因素。通过使热力学参数服从某种关系,与已知的因瓦斯相比,铁磁体的因瓦合金行为在更宽的温度范围内被预测。

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