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首页> 外文期刊>Physica, B. Condensed Matter >First principles study of structural, phonon, optical, elastic and electronic properties of Y _3Al _5O _(12)
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First principles study of structural, phonon, optical, elastic and electronic properties of Y _3Al _5O _(12)

机译:Y _3Al _5O _(12)的结构,声子,光学,弹性和电子性质的第一性原理研究

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摘要

Structural, phonon, optical, elastic and electronic properties of Y _3Al _5O _(12) have been investigated by means of the first principles method with the Cambridge Serial Total Energy Package (CASTEP) code based on the density functional theory. The calculated lattice parameters, valence charge density, bond length and single crystal elastic properties at zero pressure are in good agreement with the available experimental data. The close agreement with the experimental values provides a good confirmation of the reliability of the calculations. Optical, elastic and phonon properties of Y _3Al _5O _(12) under pressures are performed. The results that are obtained show the changes of optical and elastic properties under the influence of applied pressure, and proving the dynamical stability of YAG are destructed when applied pressure up to 7 GPa. Moreover, polycrystalline elastic moduli are deduced according to the Reuss assumption. Those elastic constants provide important parameters that describe reliability of both physical model and engineering application at the atomistic level. The result of the density of states explains the nature of the electronic band structure.
机译:Y _3Al _5O _(12)的结构,声子,光学,弹性和电子性质已经通过基于密度泛函理论的剑桥系列总能量包(CASTEP)代码的第一原理方法进行了研究。计算得到的晶格参数,化合价电荷密度,键长和零压力下的单晶弹性与现有实验数据吻合良好。与实验值的高度吻合很好地证实了计算的可靠性。在压力下执行Y _3Al _5O _(12)的光学,弹性和声子特性。所得结果表明,在施加压力的影响下,光学性能和弹性性能发生了变化,并证明当施加压力高达7 GPa时,YAG的动态稳定性受到破坏。此外,根据Reuss假设推导多晶弹性模量。这些弹性常数提供了重要的参数,这些参数描述了原子级物理模型和工程应用的可靠性。状态密度的结果说明了电子能带结构的性质。

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