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Structural, electronic and vibrational properties of InN under high pressure

机译:InN在高压下的结构,电子和振动特性

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The structural, electronic and vibrational properties of InN under pressures up to 20 GPa have been investigated using the pseudo-potential plane wave method (PP-PW). The generalized-gradient approximation (GGA) in the frame of density functional theory (DFT) approach has been adopted. It is found that the transition from wurtzite (B4) to rocksalt (B1) phase occurs at a pressure of approximately 12.7 GPa. In addition, a change from a direct to an indirect band gap is observed. The mechanism of these changes is discussed. The phonon frequencies and densities of states (DOS) are derived using the linear response approach and density functional perturbation theory (DFPT). The properties of phonons are described by the harmonic approximation method. Our results show that phonons play an important role in the mechanism of phase transition and in the instability of B4 (wurtzite) just before the pressure of transition. At zero pressure our data agree well with recently reported experimental results.
机译:使用伪电位平面波方法(PP-PW)研究了InN在高达20 GPa的压力下的结构,电子和振动特性。在密度泛函理论(DFT)方法的框架内,采用了广义梯度逼近(GGA)。发现从纤锌矿(B4)相到岩盐(B1)相的转变发生在大约12.7 GPa的压力下。另外,观察到从直接带隙到间接带隙的变化。讨论了这些更改的机制。使用线性响应方法和密度泛函扰动理论(DFPT)导出声子频率和状态密度(DOS)。声子的性质通过谐波近似法来描述。我们的研究结果表明,声子在相变机理和B4(纤锌矿)失稳之前的转变中起着重要作用。在零压力下,我们的数据与最近报道的实验结果非常吻合。

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