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Structural phase stability, elastic parameters and thermal properties of YN from first-principles calculation

机译:从第一原理计算的结构相位稳定性,弹性参数和yN的热性能

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摘要

The structural phase stability, elastic parameters and thermodynamic properties of YN at normal and under high pressure are reported. The calculations are mainly performed using the full-potential linearized augmented plane wave method within the density functional theory. Both local density approximation (LDA) and generalized gradient approximation (GGA) are used to model the correlation-exchange potential. The calculated equilibrium lattice parameter and the bulk modulus show good accordance with the experimental and previous theoretical reports. The phase transition from the NaCl (B1) structure to the CsCl (B2) structure is found to occur at 131 GPa within GGA and 115 GPa within LDA. The linear pressure coefficients of the different elastic moduli being addressed here are also determined along with the mechanical and dynamical stability criteria which are shown to be satisfied for YN with B1 phase under normal conditions. Besides, the heat capacity and other thermodynamic parameters are examined and discussed versus temperature.
机译:报道了正常和高压下Yn的结构相位稳定性,弹性参数和热力学性质。主要使用密度泛函理论内的全电位线性化增强平面波方法进行计算。局部密度近似(LDA)和广义梯度近似(GGA)都用于模拟相关交换电位。计算的平衡晶格参数和散装模量呈现出良好的实验和先前的理论报告。发现从NaCl(B1)结构与CSCl(B2)结构的相转变发生在LDA内的GGA和115GPa内的131GPa。这里寻址的不同弹性模的线性压力系数以及机械和动态稳定性标准也确定,在正常条件下,在具有B1相的Yn的情况下被显示为Yn的满足。此外,检查和讨论了热容量和其他热力学参数与温度。

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