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First-principles calculations of the structural, elastic, electronic, chemical bonding and optical properties of zinc-blende and rocksalt GeC

机译:闪锌矿和岩石盐GeC的结构,弹性,电子,化学键合和光学性质的第一性原理计算

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摘要

Structural parameters, elastic, electronic, bonding and optical properties of zinc-blende and rocksalt GeC have been investigated using the plane-wave ultrasoft pseudopotential technique based on the first-principles density-functional theory (DFT). The ground-state properties obtained by minimizing the total energy are in favorable agreement with the previous work. Two phases of GeC are found to be elastically stable and we have obtained the bulk, shear and Young's modulus, Poisson's coefficient and Lame's constants for zinc-blende and rocksalt GeC. We estimated the Debye temperature of zinc-blende and rocksalt GeC from the acoustic velocity. Electronic and chemical bonding properties have been studied. Moreover, the complex dielectric function, refractive index, extinction coefficient, optical reflectivity, absorption coefficient, energy-loss spectrum and the complex conductivity function are calculated.
机译:基于第一原理密度泛函理论(DFT),利用平面波超软伪电位技术研究了闪锌矿和岩石盐GeC的结构参数,弹性,电子,键和光学性质。通过使总能量最小化而获得的基态特性与先前的工作是一致的。发现GeC的两个相是弹性稳定的,我们获得了闪锌矿和岩石盐GeC的体积,剪切和杨氏模量,泊松系数和Lame常数。我们根据声速估算了闪锌矿和岩石盐GeC的德拜温度。已经研究了电子和化学键合性质。此外,计算了复介电函数,折射率,消光系数,光反射率,吸收系数,能量损失谱和复电导率函数。

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