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首页> 外文期刊>Physical review >Lattice dynamics of the model percolation-type (Zn,Be)Se alloy: Inelastic neutron scattering, ab initio study, and shell-model calculations
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Lattice dynamics of the model percolation-type (Zn,Be)Se alloy: Inelastic neutron scattering, ab initio study, and shell-model calculations

机译:模型渗流型(Zn,Be)Se合金的晶格动力学:非弹性中子散射,从头算研究和壳模型计算

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摘要

The random Zn_(1-x)Be_xSe zincblende alloy is known to exhibit a peculiar three-mode [1 x (Zn-Se),2x (Be-Se)] vibration pattern near the Brillouin zone (BZ) center, of the so-called percolation type, apparent in its Raman spectra. This is due to an unusually large contrast between the physical properties (length, ionicity) of the constituting bonds. In the present work, the inelastic neutron scattering is applied to study the dispersion of modes away from the BZ center, with special attention to the q dependence of the BeSe-like transverse optic doublet. The discussion is supported by calculations of lattice dynamics done both ab initio (using the siesta code) and within the shell model. The BeSe-like doublet is found to survive nearly unchanged throughout the BZ up to the zone edge, indicating that its origin is at the ultimate bond scale. The microscopic mechanism of splitting is clarified by ab initio calculations. Namely, the local lattice relaxation needed to accommodate the contrast in physical properties of the Zn-Se and Be-Se bonds splits the stretching and bending modes of connected, i.e., percolativelike, (Be-Se) bonds.
机译:众所周知,随机的Zn_(1-x)Be_xSe闪锌矿合金在布里渊区(BZ)中心附近表现出独特的三模[1 x(Zn-Se),2x(Be-Se)]振动模式,因此所谓的渗滤型,在拉曼光谱中很明显这是由于构成键的物理性质(长度,离子性)之间的反差很大。在当前的工作中,非弹性中子散射被用于研究远离BZ中心的模的色散,并特别注意BeSe型横向光学双峰的q依赖性。该讨论得到了从头算起(使用午休代码)和在壳模型中完成的晶格动力学计算的支持。发现在整个BZ中直至区域边缘,类似BeSe的双峰都几乎没有改变,这表明其起源是在最终的结合尺度上。通过从头算就可以弄清楚分裂的微观机理。即,为适应Zn-Se和Be-Se键的物理性质的对比所需要的局部晶格弛豫分裂了所连接的(Be-Se)键的拉伸和弯曲模式。

著录项

  • 来源
    《Physical review》 |2014年第15期|155201.1-155201.13|共13页
  • 作者单位

    Solid State Physics Division, Bhabha Atomic Research Centre, Mumbai 400085, India;

    Laboratoire Leon Brillouin, CEA-CNRS Saclay, 91191 Gif-Sur-Yvette, France;

    Institut Laue Langevin, 6 rue Jules Horowitz, 38042 Grenoble Cedex 9, France;

    Institut de Mineralogie et de Physique des Milieux Condenses, CNRS, Universite Paris 6, France;

    Universite de Lorraine, LCP-A2MC, Institut Jean Barriol, Metz 57078, France;

    Universite de Lorraine, LCP-A2MC, Institut Jean Barriol, Metz 57078, France;

    Solid State Physics Division, Bhabha Atomic Research Centre, Mumbai 400085, India;

    Solid State Physics Division, Bhabha Atomic Research Centre, Mumbai 400085, India;

    Institute of Physics, N. Copernicus University, 87-100 Torun, Poland;

    Institute of Physics, Polish Academy of Sciences, 02-668 Warsaw, Poland;

    Raja Ramanna Centre for Advanced Technology, Indore 452013, India;

    Universite de Lorraine, LCP-A2MC, Institut Jean Barriol, Metz 57078, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    general theory;

    机译:一般理论;

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