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首页> 外文期刊>The journal of physics and chemistry of solids >First principle characterization of structural, electronic, mechanical, thermodynamic, linear and nonlinear optical properties of zinc blende InAs, InSb and their InAsxSb1-x ternary alloys
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First principle characterization of structural, electronic, mechanical, thermodynamic, linear and nonlinear optical properties of zinc blende InAs, InSb and their InAsxSb1-x ternary alloys

机译:锌融合INA,INSB及其INASXSB1-X三元合金结构,电子,机械,热力,线性和非线性光学性能的第一个原理表征

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摘要

The structural and electronic properties of InAsxSb1-x ternary alloys are studied using plane-wave pseudopotential method based on the density functional theory. The Born effective charge, elastic constants, phonon dispersion curves, linear and nonlinear optical properties of these compounds are calculated using density functional perturbation theory. Based on the calculated phonon frequency, the specific heat at constant volume and entropy are obtained within the harmonic approximation. Moreover, due to the density functional theory band gap problem, the band gap correction is performed within the one-shot GW approximations. The distinguished role of In 4d states on the electronic energy band gap and nonlinear properties of these alloys are extensively explored by the comparison between the calculated results of Hartwigsen-Goedecker-Hutter and Trouiller-Martins-type pseudopotentials. The calculated results show that InAsxSb1-x alloys are mechanically stable and can be a good candidate for high-performance nonlinear optical material. The calculated results of InAs and InSb compounds are in acceptable agreement with available theoretical and experimental results, so the calculated results of InAsxSb1-x alloys will be helpful for future experimental and theoretical investigations.
机译:基于密度泛函理论,使用平面波伪能量方法研究了INASXB1-X三元合金的结构和电子性质。使用密度函数扰动理论计算这些化合物的出生的有效电荷,弹性常数,声子分散曲线,线性和非线性光学性质。基于计算的声子频率,在谐波近似内获得恒定体积和熵处的比热。此外,由于密度函数理论带隙问题,在单次GW近似内执行带隙校正。通过比较Hartwigsen-Goedecker-Hutter-Hutter和Truiler-Martins型伪能源的计算结果,广泛探索在4D状态对这些合金的电子能带隙和非线性性质的杰出作用。计算结果表明,INASXSB1-X合金是机械稳定的,可以是高性能非线性光学材料的良好候选者。 INAS和INSB化合物的计算结果是可接受的与可用理论和实验结果的协议,因此INASXSB1-X合金的计算结果将有助于未来的实验和理论调查。

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