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Collective and Tracer Diffusion via a Defect Cluster in LSGM

机译:通过LSGM中的缺陷簇进行的集体和示踪扩散

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摘要

It was recently shown by Schulz and co-workers that in doped lanthanum gallate; La(i.X) SrxGa(i-y)Mgy0(3-(X+y)/2) (LSGM) the three cations: La, Sr and Mg have tracer diffusivities that are nearly identical. To explain these findings, a bound defect cluster mechanism containing a cation vacancy from both the A- and the B- sublattices and an anion vacancy was proposed as the principal vehicle for cation diffusion in LSGM. In this paper, implications of this mechanism are considered for the first time. Sum-rule expressions for the collective correlation factors are derived and found to be in excellent agreement with Monte Carlo calculations. Expressions are also developed for the tracer correlation factors of lanthanum and gallium for diffusion via the cluster mechanism and tested by Monte Carlo computer simulation. Good agreement was found. The ratio of the tracer diffusivities of lanthanum and gallium are shown to be consistent with the cluster mechanism.
机译:舒尔茨及其同事最近发现,掺杂的没食子酸镧中有这种现象。 La(i.X)SrxGa(i-y)Mgy0(3-(X + y)/ 2)(LSGM)这三个阳离子:La,Sr和Mg的示踪剂扩散率几乎相同。为了解释这些发现,有人提出了一种缺陷缺陷簇机制,其中包含A和B亚晶格的阳离子空位以及阴离子空位,作为LSGM中阳离子扩散的主要媒介。在本文中,首次考虑了这种机制的含义。得出了集体相关因子的和规则表达式,发现它们与蒙特卡洛计算非常吻合。还开发了用于通过簇机制扩散的镧和镓的示踪剂相关因子的表达式,并通过蒙特卡洛计算机仿真进行了测试。找到了良好的协议。镧和镓的示踪扩散系数之比表明与簇机制是一致的。

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