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First-principles calculations of phase transition, elasticity, phonon spectra, and thermodynamic properties for hafnium

机译:第一原理计算相转移,弹性,声子光谱和铪的热力学性质

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摘要

In this work, structural transformation, elastic behaviors, phonon spectra, and thermodynamic properties upon hydrostatic compression of hafnium are investigated by using first-principle density functional theory. Our calculated equilibrium structural parameters and the transition pressures of alpha - omega -beta are well consistent with experiments. At ambient pressure, the elastic constants indicate that the alpha and omega phases are mechanically stable while the beta phase is unstable. The thermal properties including bulk modulus, entropy, and heat capacity in wide range of pressure and temperature for alpha-Hf are predicted. We present results of the phonon spectra and phonon density of states for the three experimentally observed phases and discuss the effects of pressure and temperature on those properties. The beta-Hf is mechanically and dynamically stable at high pressure or at high temperature. Employing the quasiharmonic approximation as well as the Debye model, we calculate the Gibbs free energy and predict the pressure-temperature phase diagram.
机译:在这项工作中,通过使用第一原理密度函数理论研究了铪静压压缩时的结构转变,弹性行为,声子光谱和热力学性质。我们计算的平衡结构参数和α的过渡压力 - &欧米茄 - &β与实验一致。在环境压力下,弹性常数表明α和ω相位是机械稳定的,而β相是不稳定的。预测了诸如α-HF范围内的体积模量,熵和热容量的热性能。我们为三个实验观察的阶段呈现声子谱和声子密度的结果,并讨论压力和温度对这些性质的影响。 β-HF在高压或高温下机械地和动态稳定。采用QuasiHarmonic近似以及德拜德模型,我们计算GIBBS自由能量并预测压力温度相图。

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