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首页> 外文期刊>Journal of magnetism and magnetic materials >Thermodynamic properties of the one-dimensional Ising model with magnetoelastic interaction
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Thermodynamic properties of the one-dimensional Ising model with magnetoelastic interaction

机译:磁力相互作用一维鉴化模型的热力学特性

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The Ising one-dimensional (1D) chain with spin S = 1/2 and magnetoelastic interaction is studied with the lattice contribution included in the form of elastic interaction and thermal vibrations simultaneously taken into account. The magnetic energy term and the elastic (static) energy term based on the Morse potential are calculated exactly. The vibrational energy is calculated in the Debye approximation, in which the anharmonicity is introduced by the Grueneisen parameter. The total Gibbs potential, including both the magnetic field, as well as the external force term, is constructed and from its minimum the equation of state is derived. From the Gibbs energy all the thermodynamic properties are calculated in a self-consistent manner. The comprehensive numerical calculations are performed in a full temperature range, i.e., from zero temperature up to the vicinity of melting. In particular, a role of magneto-elastic coupling is emphasized and examined. The numerical results are illustrated in figures and discussed.
机译:使用旋转S = 1/2和磁力弹性相互作用的诸如一维(1D)链具有晶格贡献,其包括以弹性相互作用的形式和同时考虑的热振动。基于摩尔斯电势的磁能项和弹性(静态)能量术语完全计算。在脱义近似下计算振动能量,其中通过Grueneisen参数引入anharmonicity。包括磁场的总Gibbs电位以及磁场和外力术语的源于衍生状态的最小等式。从吉布斯能量,所有热力学性质都以自我支撑的方式计算。综合数值计算在全温范围内进行,即从零温度达到熔化附近。特别地,强调并检查了磁弹性耦合的作用。数值结果在图中示出并讨论。

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