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BSOnd-order potentials for molybdenum and niobium: an assessment of their quality

机译:钼和铌的分配潜力:评估他们的质量

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The bond-order potentials (BOP) have been constructed for Mo and Nb. These potentials are based on the real-space parameterized tight-binding method in which diagnonalization of the Hamiltonian is avoided by direct calculation of the bond-order. In this scheme the energy consists of three partsP: The bond part that comprises contributions of d electrons and introduces into the scheme the covalent character of bonding, the central-force many-body part that reflects the environmental dependence of sp overlap repulsion and a pair-wise contribution. The potentials were tested by calculation of energy differences between the bcc and several alternate structures and by investigating the trigonal deformation path. These calulations have been made in parallel using BOP and the full-potential linearized augmented plane-wave method. The central-force many-body Finnis-Sinclair type potentials have also been incuded into the study of the deformation path. This evaluation of BOP reveals that the potentials reproduce very closely the ab initio results and are, therefore, very suitable for atomistic studies of extended defects in the transition metals.
机译:键合电位(BOP)已为MO和NB构建。这些电位基于实际空间参数化紧绑定方法,其中通过直接计算键合阶来避免哈密顿尼斯的诊断。在该方案中,能量由三个Partsp:包括D电子的贡献的粘合部分并引入方案中的共价特征,中央力量多体部分反映SP重叠排斥和一对的环境依赖性 - 方向贡献。通过计算BCC和几种替代结构之间的能量差和通过研究Trigonal变形路径来测试电位。使用BOP和全电位线性化增强平面波方法并行地进行了这些级别。中央部队许多身体芬尼斯 - 辛克莱型电位也被引入了变形路径的​​研究。这种BOP的评估揭示了电位非常密切地繁殖AB初始结果,因此非常适合于过渡金属中的延长缺陷的原子学研究。

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