首页> 外文期刊>Hyperfine Interactions: Journal Devoted to Research in the Border Regions of Solid State, Atomic and Nuclear Physics >Indium-defect interactions in FCC and BCC metals studied using the modified embedded atom method
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Indium-defect interactions in FCC and BCC metals studied using the modified embedded atom method

机译:使用改进的嵌入原子方法研究FCC和BCC金属中的铟缺陷相互作用

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With the aim of developing a transferable potential set capable of predicting defect formation, defect association, and diffusion properties in a wide range of intermetallic compounds, the present study was undertaken to test parameterization strategies for determining empirical pair-wise interaction parameters in the modified embedded atom method (MEAM) developed by Baskes and coworkers. This report focuses on indium-solute and indium-vacancy interactions in FCC and BCC metals, for which a large set of experimental data obtained from perturbed angular correlation measurements is available for comparison. Simulation results were found to be in good agreement with experimental values after model parameters had been adjusted to reproduce as best as possible the following two sets of quantities: (1) lattice parameters, formation enthalpies, and bulk moduli of hypothetical equiatomic compounds with the NaCl crystal structure determined using density functional theory and (2) dilute solution enthalpies inmetals as predicted by Miedema's semi-empirical model.
机译:为了开发能够预测各种金属间化合物中缺陷形成,缺陷缔合和扩散特性的可转移电势集,本研究进行了测试参数化策略,以确定改进的嵌入式系统中的经验对相互作用参数Baskes及其同事开发的原子方法(MEAM)。本报告的重点是FCC和BCC金属中的铟-溶质和铟-空位相互作用,可以从它们的角度相关性测量中获得大量实验数据进行比较。在调整模型参数以尽可能重现以下两组参数后,发现仿真结果与实验值非常吻合:(1)假设的等原子化合物与NaCl的晶格参数,形成焓和体积模量如Miedema的半经验模型所预测,使用密度泛函理论和(2)稀溶液焓使金属的晶体结构焓变。

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