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拓扑半金属TaM(M = As,Sb)中压力诱导的物理性质。

Pressure-induced physical properties in topological semi-metal TaM (M = As, Sb).

作者信息

Nobin Md Nadim Mahamud, Khan Mithun, Islam Syed Saiful, Ali Md Lokman

机构信息

Department of Physics, Pabna University of Science and Technology Pabna-6600 Bangladesh

出版信息

RSC Adv. 2023 Jul 24;13(32):22088-22100. doi: 10.1039/d3ra03085g. eCollection 2023 Jul 19.

Abstract

In this study, DFT based first principles calculations are used for measuring the structural, elastic, mechanical, electronic, optical and thermodynamic features of topological semimetal TaM (M = As, Sb) under various pressures. We conducted the first investigation into the physical properties of the topological semimetal TaM (M = As, Sb) under pressure. Formation energy and Born stability criteria justify the compound's thermodynamic and mechanical stability. We used elastic constants, elastic moduli, Kleinman parameter, machinability index, and Vickers hardness to investigate the mechanical properties of topological semimetal TaM. Poisson's and Pugh's ratios reveal that both compounds change from brittle to ductile in response to pressure. The increasing nature of elastic moduli suggests that TaM becomes stiffer under stress. The pressure has a significant effect on the anisotropy factor for both materials. Band structure analysis shows that both compounds are Weyl semi-metals and the d orbital contributes significantly to the formation of the Fermi level, as shown by the density of states (DOS) analysis. Investigation of electronic characteristics provides important support for dissecting optical performance. Both the reflectivity and absorption spectra shift upwards in energy when pressure is increased. The refractive index value decreases and becomes flat in the higher energy region. Based on their refractive indices, both of these materials demonstrate as a high-density optical data storage medium when exposed to the right light source. The thermodynamic properties including sound velocity, and Debye temperature all exhibit an increasing nature with applied pressure. Due to their high Debye temperatures, the components under study have a rather high melting point.

摘要

在本研究中,基于密度泛函理论(DFT)的第一性原理计算被用于测量拓扑半金属TaM(M = As,Sb)在不同压力下的结构、弹性、力学、电子、光学和热力学特性。我们首次对拓扑半金属TaM(M = As,Sb)在压力下的物理性质进行了研究。形成能和玻恩稳定性判据证明了该化合物的热力学和力学稳定性。我们使用弹性常数、弹性模量、克莱曼参数、可加工性指数和维氏硬度来研究拓扑半金属TaM的力学性能。泊松比和普格比表明,这两种化合物在压力作用下都从脆性转变为韧性。弹性模量的增加表明TaM在应力作用下变得更硬。压力对这两种材料的各向异性因子有显著影响。能带结构分析表明,这两种化合物都是外尔半金属,态密度(DOS)分析表明d轨道对费米能级的形成有显著贡献。电子特性的研究为剖析光学性能提供了重要支持。当压力增加时,反射率和吸收光谱的能量都向上移动。折射率值降低并在较高能量区域变得平坦。基于它们的折射率,这两种材料在暴露于合适的光源时都表现为高密度光学数据存储介质。包括声速和德拜温度在内的热力学性质都随施加的压力呈现增加的趋势。由于它们的德拜温度较高,所研究的组分具有相当高的熔点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c175/10363775/361f5fee865f/d3ra03085g-f1.jpg

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