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The structural, electronic, elastic, vibration and thermodynamic properties of GdMg

机译:GdMg的结构,电子,弹性,振动和热力学性质

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We have investigated the structural, elastic, electronic, vibration and thermodynamic properties of GdMg alloy using the methods of density functional theory within the generalized gradient approximation (GGA) for the exchange-correlation functional. We have presented the results on the basic physical parameters, such as the lattice constant, bulk modulus, pressure derivative of bulk modulus with and without spin-polarization (SP), second-order elastic constants, Zener anisotropy factor, Poisson's ratio, Young's modulus, and isotrbpic shear modulus. The thermodynamic properties of the considered compound are obtained through the quasi-harmonic Debye model. In order to obtain further information, we have also studied the pressure and temperature-dependent behavior of the volume, bulk modulus, thermal expansion coefficient, heat capacity, and Debye temperature in a wide temperature range of 0-1200 K. We have also calculated phonon frequencies and one-phonon density of states for B2 structure of GdMg compound. The temperature-dependent behavior of heat capacity and entropy obtained from phonon density of states for GdMg compound in B2 phase is also presented.
机译:我们使用交换泛函泛函的广义​​梯度近似(GGA)中的密度泛函理论方法研究了GdMg合金的结构,弹性,电子,振动和热力学性质。我们已经给出了基本物理参数的结果,例如晶格常数,体积模量,具有和不具有自旋极化(SP)的体积模量的压力导数,二阶弹性常数,齐纳各向异性系数,泊松比,杨氏模量和等张剪切模量。通过准谐波德拜模型获得了所考虑化合物的热力学性质。为了获得更多信息,我们还研究了在0-1200 K的宽温度范围内,体积,体积模量,热膨胀系数,热容量和德拜温度与压力和温度相关的行为。我们还计算了GdMg化合物B2结构的声子频率和单声子态密度。还给出了B2相中GdMg化合物从声子态密度得到的热容量和熵的温度依赖性行为。

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