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Electronic structure study regarding the influence of macroscopic deformations on the vacancy formation energy in aluminum

机译:关于宏观变形对铝空位形成能量影响的电子结构研究

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We study the effect of macroscopic deformations on the vacancy formation energy in aluminum using electronic structure calculations based on orbital-free density functional theory. Specifically, working in the finite-deformation setting, we systematically traverse the six-dimensional strain space and calculate the corresponding vacancy formation energy. We find that the vacancy formation energy is primarily influenced by the volumetric component of strain, demonstrating a power law dependence; the defect core energy has a large variation with respect to the strain; and apart from the case of large tensile strains, the core energy is the main contributor to the vacancy formation energy. This demonstrates the importance of accounting for the defect core in continuum formulations, wherein it is typically neglected. (C) 2019 Elsevier Ltd. All rights reserved.
机译:基于轨骨密度函数理论的电子结构计算研究宏观变形对铝中空位形成能量的影响。 具体地,在有限变形设置中工作,我们系统地遍历六维应变空间并计算相应的空位形成能量。 我们发现空位形成能量主要受到应变体积分量的影响,展示了权力法的依赖; 缺陷芯能量相对于应变具有大的变化; 除了大拉伸菌株的情况外,核心能量是空位形成能量的主要因素。 这证明了在连续式制剂中核算缺陷核心的重要性,其中通常被忽略。 (c)2019年elestvier有限公司保留所有权利。

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