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Calculation of the phenomenological coefficients for diffusion by six jump cycles in non-stoichiometric intermetallic compounds

机译:非化学计量金属间化合物中六跳跃周期扩散的现象学系数的计算

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In this paper, the six-jump-cycle mechanism, which was conceived as a minimum-energy-penalty sequence of jumps for certain stoichiometric alloys showing antistructural disorder, is extended and employed to calculate the phenomenological coefficients for diffusion at non-stoichiometric compositions for alloys taking the B2 structure. We adopt an analogue of the five-frequency model for impurity diffusion by using antistructural atoms as the 'impurity' and the six-jump cycle as the diffusion mechanism unit. We frame the formalism in the Ising alloy model. We derive asymptotic (T --> 0) expressions for the phenomenological coefficients. The results obtained are in excellent agreement with Monte Carlo computer simulations. [References: 20]
机译:在本文中,扩展了六跳循环机制,该跳变机制被认为是对某些显示出抗结构紊乱的化学计量合金的最小能量罚跳跃序列,并被用于计算在非化学计量组成下扩散的现象学系数。 B2结构的合金。我们采用五频模型的类似物进行杂质扩散,方法是使用抗结构原子作为“杂质”,并以六跳周期作为扩散机理单位。我们在Ising合金模型中构造形式主义。我们导出了现象学系数的渐近(T-> 0)表达式。获得的结果与蒙特卡洛计算机仿真非常吻合。 [参考:20]

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