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Analytic bond-order potentials for the bcc refractory metals Nb, Ta, Mo and W

机译:bcc难熔金属Nb,Ta,Mo和W的分析键序势

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Bond-order potentials (BOPs) are based on the tight-binding approximation for determining the energy of a system of interacting atoms. The bond energy and forces are computed analytically within the formalism of the analytic BOPs. Here we present parametrizations of the analytic BOPs for the bcc refractory metals Nb, Ta, Mo and W. The parametrizations are optimized for the equilibrium bcc structure and tested for atomic environments far from equilibrium that had not been included in the fitting procedure. These tests include structural energy differences for competing crystal structures; tetragonal, trigonal, hexagonal and orthorhombic deformation paths; formation energies of point defects as well as phonon dispersion relations. Our tests show good agreement with available experimental and theoretical data. In practice, we obtain the energetic ordering of vacancy, [1 1 1], [1 1 0], and [1 0 0] self-interstitial atom in agreement with density functional theory calculations.
机译:键序势(BOP)基于紧密结合的近似值,用于确定相互作用原子系统的能量。结合能和力是在分析性BOP的形式主义中进行分析计算的。在这里,我们介绍了bcc难熔金属Nb,Ta,Mo和W的分析BOP的参数化。该参数化针对平衡bcc结构进行了优化,并针对远离平衡的原子环境进行了测试,该环境尚未包含在拟合过程中。这些测试包括竞争晶体结构的结构能差异;四方,三角,六边形和正交变形路径;点缺陷的形成能以及声子的色散关系。我们的测试与可用的实验和理论数据显示出良好的一致性。在实践中,我们与密度泛函理论计算相符,获得了空位,[1 1 1],[1 1 0]和[1 0 0]自填原子的能量顺序。

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