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Convergence of calculated dislocation core structures in hexagonal close packed titanium

机译:六边形关闭包装钛中计算错位核心结构的收敛性

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The core structure of a -type screw dislocations in hexagonal close packed titanium is investigated computationally using periodic supercells with quadrupolar configurations in combination with density functional theory (DFT) and a modified embedded atom method (MEAM) classical potential. Two arrangements of the quadrupolar supercell configurations are examined, and within each arrangement two initial dislocation positions are compared. (Meta) stable pyramidal and prismatic dislocation core structures exist within both DFT and MEAM methods, and the relaxed structure from a given configuration resulting from our anisotropic elasticity theory solution depends only on the assumed initial dislocation positions. Within DFT we find the ground state core structure to be spread on the pyramidal plane. We find that it is necessary to include the semi-core 3p electrons as valence states in the DFT calculations in order to converge the ground state dislocation core configuration and difference in energy between structures. In terms of k-point sampling, it is found that at least a 1 x 1 x 15 k-point mesh is necessary to converge the dislocation core structure for a supercell one Burgers vector deep. Use of higher k-point densities or inclusion of additional semi-core electronic states as valence electrons results in the same core structure. With the MEAM potential considered in this work, we find the ground state core configuration to be spread predominantly on the prismatic plane, in contrast with the DFT results.
机译:&的核心结构A&六角形关闭填充钛中的螺杆脱位在使用周期性的超级细胞与Quadrupolar配置结合密度泛函理论(DFT)和改进的嵌入原子方法(MEAM)经典潜力来研究六方关闭填充钛中的螺钉脱位。检查了Quadrupolar SuperCell配置的两个布置,并在每个布置内进行比较两个初始位错位置。 (Meta)稳定的金字塔和棱镜位错核心结构存在于DFT和MEAM方法中,并且来自我们各向异性弹性理论解决方案产生的给定配置的松弛结构仅取决于假定的初始位错位置。在DFT中,我们发现地态核心结构要在金字塔平面上传播。我们发现,在DFT计算中必须包括半核3P电子作为价状态,以便收敛地位脱位核心配置和结构之间的能量差异。就K点采样而言,发现至少一个1×1×15 k点网格必须收敛到超级电池汉总矢量的脱位芯结构。使用较高的k点密度或包括额外的半核电子状态作为价电子导致相同的核心结构。通过在这项工作中考虑的啤振潜力,我们发现与DFT结果相比,我们发现主要的核心配置主要在棱镜平面上散布。

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