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Density Functional Calculations on Structural and Elastic Properties of BeCo Intermetallic under Pressure

机译:压力下BeCo金属间化合物的结构和弹性性能的密度泛函计算

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The structural and elastic properties of beryllium cobalt intermetallic compound in B 2 -type (CsCl) structure are studied. The calculations were performed employing full potential linearized augmented plane wave (FP-LAPW) method. It is based on density functional theory (DFT). The generalized gradient approximation (GGA) in the scheme of Perdew, Burke and Ernzrhof (PBE) Wu and Cohen (WC) and Perdew et al. (PBE-sol) has been used for the exchange correlation potential. The equilibrium properties such as lattice constant (a 0 ), bulk modulus (B) and its first derivative (B') have been obtained. The calculated equilibrium lattice parameters are in excellent agreement with the available experimental and other theoretical results. We first time report the variation of elastic constants under pressure range (0 GPa - 20 GPa).
机译:研究了铍钴金属间化合物B 2型(CsCl)结构的结构和弹性性能。使用全势线性化增强平面波(FP-LAPW)方法进行计算。它基于密度泛函理论(DFT)。 Perdew,Burke和Ernzrhof(PBE)Wu和Cohen(WC)以及Perdew等人的方案中的广义梯度近似(GGA)。 (PBE-sol)已用于交换相关电位。已经获得了诸如晶格常数(a 0),体积模量(B)及其一阶导数(B')的平衡特性。计算出的平衡晶格参数与可用的实验和其他理论结果高度吻合。我们第一次报告在压力范围(0 GPa-20 GPa)下弹性常数的变化。

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