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首页> 外文期刊>Physica, B. Condensed Matter >Ab initio investigation of surface phonons on the (001) surface of ZrC
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Ab initio investigation of surface phonons on the (001) surface of ZrC

机译:ZrC(001)表面上的表面声子的从头算研究

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We presented an ab initio pseudopotential study within the generalized gradient density functional approximation of the structural and electronic properties of the ZrC(0 0 1) surface. The calculated structural parameters for the ZrC(0 0 1) surface accord very well with previous experimental findings. The ZrC(0 0 1) surface is metallic, because at least one surface state crosses the Fermi level in the gap region of the projected electronic spectrum. Using our atomic and electronic structures, surface phonon dispersion curves are calculated by employing a linear response approach on the density functional perturbation theory. The calculated phonon spectrum compares very well with the experimental data. The atomic displacement patterns of the zone-center and zone-edge phonon modes are presented and analyzed for the ZrC(0 0 1) surface, carefully. Using this analyzation, energy locations and polarization characteristics of Love, Wallis, Lucas, and Fuchs-Kliewer modes have been determined.
机译:我们提出了ZrC(0 0 1)表面的结构和电子性质的广义梯度密度泛函近似中的从头算伪电位研究。 ZrC(0 0 1)表面的计算结构参数与先前的实验结果非常吻合。 ZrC(0 0 1)表面是金属的,因为至少一个表面状态在投影电子光谱的间隙区域中穿过费米能级。利用我们的原子和电子结构,通过对密度泛函微扰理论采用线性响应方法来计算表面声子色散曲线。计算得出的声子谱与实验数据非常吻合。详细介绍了ZrC(0 0 1)表面的区域中心和区域边缘声子模式的原子位移模式。使用此分析,可以确定Love,Wallis,Lucas和Fuchs-Kliewer模式的能量位置和极化特性。

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