Theoretical Investigations of Lattice Dynamics and Dynamical Elastic Constants of Rh0.6Pd0.4 and Rh0.2Pd0.8 Binary Alloys Using Transition Metal Pseudopotential

Nupur P. Vora, Priyank V. Kumar, S. Vyas, N. K. Bhatt, P. R. Vyas, V. Gohel
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引用次数: 2

Abstract

The experimental and theoretical studies of various properties of transition metals alloys are important in the material science research. Inspired by such fact, in the present communication we have carried out theoretical studies of lattice dynamics and dynamical elastic constants of Rh0.6Pd0.4 and Rh0.2Pd0.8 using transition metal pseudopotential. The form of the pseudopotential used in the present calculation is directly derived from generalized pseudopotential theory (GPT) and no phenomenology was used to construct pseudopotential in real space. The pseudopotential was found to be successful for the study of static, dynamic and transport properties of many transition metals. In absence of any experimental and theoretical studies first time we are presenting theoretical results of phonon dispersion for both the alloys which may be considered as prediction. Due to unavailability of experimental results, presently computed elastic constants are comparable with those studied recently by using Exact Muffin-Tin Orbitals method within the Perdew-Burke-Ernzerhof exchange-correlation approximation. Encouraged by present approach, we would like to extend it further for the remaining binary alloys of transition metals alloys.
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基于过渡金属赝势的Rh0.6Pd0.4和Rh0.2Pd0.8二元合金晶格动力学和动态弹性常数的理论研究
过渡金属合金各种性能的实验和理论研究是材料科学研究的重要内容。受此启发,本文利用过渡金属赝势对Rh0.6Pd0.4和Rh0.2Pd0.8的晶格动力学和动态弹性常数进行了理论研究。在本计算中使用的伪势的形式是直接从广义伪势理论(GPT)中推导出来的,并且没有使用现象学来构造实空间中的伪势。伪势可以成功地用于研究许多过渡金属的静态、动态和输运性质。在没有任何实验和理论研究的情况下,我们首次提出了两种合金声子色散的理论结果,可以认为是预测。由于实验结果难以获得,目前计算的弹性常数与最近在Perdew-Burke-Ernzerhof交换相关近似中使用Exact Muffin-Tin轨道方法研究的弹性常数相当。在现有方法的鼓舞下,我们希望将其进一步推广到剩余的过渡金属二元合金。
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