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Electronic Structure of AlP Under Pressure Using Semiempirical Method

机译:半经验法研究AlP在压力下的电子结构

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The effect of pressure on the structural and electronic parameters of zinc-blende aluminum phosphide crystal has been investigated using the large unit cell within the framework of complete neglect of differential overlap and the linear combination of atomic orbital approximation. Cohesive energy, indirect band gap, valence bandwidth, conduction bandwidth, bulk modulus, and valence charge distribution are all obtained. The calculations show a good agreement of lattice constant, cohesive energy, valence bandwidth, and bulk modulus with the experimental data. The calculated band gap is twice the experimental value. This high value of the band gap is expected in Hartree-Fock method. The effect of pressure on the aforementioned properties is investigated. It is found that the indirect band gap, valence bandwidth, bulk modulus and cohesive energy increase with increasing pressure, while the conduction bandwidth decreases. The maximum value of pressure is taken to be 9 GPa, because beyond this value, the phase of AlP transforms from zinc blende phase to nickel arsenic phase.PACS: 71.10-w, 71.15-m, 71.15. Ap, 71.15. Nc, 64.10.+h.
机译:在完全忽略微分重叠和原子轨道近似线性组合的框架内,使用大晶胞研究了压力对共混锌磷化铝铝晶体结构和电子参数的影响。均获得了内聚能,间接带​​隙,价带宽,传导带宽,体积模量和价电荷分布。计算结果表明晶格常数,内聚能,价态带宽和体积模量与实验数据吻合良好。计算出的带隙是实验值的两倍。在Hartree-Fock方法中,带隙的这一高值是可以预期的。研究了压力对上述性能的影响。发现随着压力的增加,间接带隙,价带,体模量和内聚能增大,而导带减小。压力的最大值取为9 GPa,因为超过此值,AlP的相将从锌共混物相转变为镍砷相。PACS:71.10-w,71.15-m,71.15。 Ap,71.15。 Nc,64.10。+ h。

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