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首页> 外文期刊>Philosophical magazine: structure and properties of condensed matter >A self-consistent mean field calculation of the phenomenological coefficients in a multicomponent alloy with high jump frequency ratios
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A self-consistent mean field calculation of the phenomenological coefficients in a multicomponent alloy with high jump frequency ratios

机译:具有高跳跃频率比的多组分合金的现象学系数的自洽平均场计算

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摘要

We present an improvement of the self-consistent mean field (SCMF) approximation of the L-ij which extends its applications to alloys presenting high jump frequency ratios. The theory uses a vacancy-atom exchange model which depends on temperature and local composition through thermodynamic and kinetic parameters. Kinetic correlations due to the vacancy mechanism are represented by a time-dependent effective Hamiltonian. In the case of high jump frequency ratios it is shown that long return paths of the vacancy need to be considered, which is shown to be equivalent to introducing many-body long-range effective interactions. We compare this theory to existing formalisms and Monte Carlo simulations for systems both without and with atomic interactions.
机译:我们提出了L-ij的自洽平均场(SCMF)近似的改进,将其应用扩展到了呈现高跳跃频率比的合金上。该理论使用空位-原子交换模型,该模型通过热力学和动力学参数取决于温度和局部组成。由于空位机理引起的动力学相关性由时间相关的有效哈密顿量表示。在高跳跃频率比的情况下,表明需要考虑空位的长返回路径,这被认为等同于引入多体远程有效交互作用。我们将该理论与现有的形式主义和蒙特卡罗模拟进行了比较,该系统既没有原子相互作用,也有原子相互作用。

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