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CONSTANT PRESSURE FIRST-PRINCIPLES MOLECULAR DYNAMICS STUDY ON BN, AlN, AND GaN

机译:恒压第一原理分子动力学研究BN,ALN和GAN

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We have performed first-principles total energy calculations to obtain various physical parameters for both zinc-blende and wurtzite BN, AlN, and GaN. The calculation has been done within the local density approximation to the density functional theory together with plane wave expansion and norm-conserving pseudopotentials. Constant-pressure first-principles molecular dynamics method has been used to relax the unit cell shape and the atomic geometry. In calculating the elastic constants and the deformation potentials, the internal displacement of atoms in the strained crystal is simulated by moving atoms with first-principles molecular dynamics method. The optical phonon frequencies at the Brillouin zone center except for LO phonons are calculated within harmonic approximation by calculating the forces acting on atoms which are displaced from equilibrium positions according to the symmetry of each mode.
机译:我们已经进行了第一原理的总能量计算,以获得锌 - 勃朗特和紫立茨BN,ALN和GaN的各种物理参数。在局部密度近似下,与平面波膨胀和标准节省伪能量一起在局部密度近似下进行计算。恒定压力的第一原理分子动力学方法已被用于松弛单元电池形状和原子几何形状。在计算弹性常数和变形电位时,通过用第一原理分子动力学方法移动原子来模拟应变晶体中原子的内部位移。除了Lo声子之外的布里渊区中心的光学声子频率通过根据每种模式的对称性作用于从平衡位置移位的原子的力来计算谐波近似。

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