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First-principles study of elastic and vibrational properties of Ni 2MnIn magnetic shape memory alloys

机译:Ni 2MnIn磁性形状记忆合金的弹性和振动特性的第一性原理研究

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摘要

We present the results of ab initio calculations of lattice dynamics and the second order elastic stiffness constants of nickel-based magnetic shape memory alloy Ni2MnIn in stoichiometric composition. The plane wave basis sets and pseudopotential method within spin-polarized generalized gradient approximation (σ-GGA) scheme of the density functional theory (DFT) is applied. Elastic constants are calculated by tetragonal and monoclinic isochoric strains on cubic L2_1 structure. The calculated elastic constants agree very well with the recent ultrasonic experimental data. Phonon dispersion spectra are investigated within linear response technique of the density functional perturbation theory (DFPT). A vibrational anomaly is observed in phonon spectra at the transverse acoustic mode (TA2) in [ζ ζ0] direction at wavevector ζ = 0.3 as an indication of the structural instability of the system to shear deformation. This anomaly is also verified by the low shear modulus and large elastic anisotropy ratio. Phonon dispersion curves are in excellent agreement with the results of recent neutron diffraction experiments.
机译:我们介绍了化学计量组成的镍基磁性形状记忆合金Ni2MnIn的晶格动力学从头算计算和二阶弹性刚度常数的结果。应用了密度泛函理论(DFT)的自旋极化广义梯度近似(σ-GGA)方案中的平面波基集和伪势方法。弹性常数是通过立方L2_1结构上的四方和单斜等速应变计算的。计算的弹性常数与最新的超声实验数据非常吻合。在密度泛函微扰理论(DFPT)的线性响应技术范围内研究了声子色散谱。在波矢量ζ= 0.3时,在[ζζ0]方向的横向声学模式(TA2)的声子光谱中观察到振动异常,表明该系统剪切变形的结构不稳定性。低剪切模量和大的弹性各向异性比率也证实了这种异常。声子色散曲线与最近的中子衍射实验的结果非常吻合。

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