论文标题

WTE2 Weyl半学的弹性,电子,键合和光学特性:对MOTE2的比较研究

Elastic, electronic, bonding, and optical properties of WTe2 Weyl semimetal: A comparative investigation with MoTe2 from first principles

论文作者

Rano, B. Rahman, Syed, Ishtiaque M., Naqib, S. H.

论文摘要

TD-WTE2是拓扑Weyl半学。正骨结构中的WTE2在室温下是稳定的。 WTE2的弹性,电子,键合和光电特性已在这项工作中使用密度函数理论进行了详细研究。首次研究了WTE2的各向异性指数的弹性行为。还首次探索了组成原子和电场偏振的粘结性质。 WTE2在弹性上是各向异性的;另一方面,光学各向异性很低。电子带结构揭示了具有半金属特征的布里鲁因区域的某些方向的准线性分散体。费米水平位于分离状态的粘结和抗键密度的伪图。电子有效的质量张量预计将是高度依赖性的。能量分散在C方向上明显弱。 WTE2中的键是共价和金属键的混合。光电特性显示在宽带的光子能量上强烈反映特征。该化合物是紫外线辐射的强吸收器。 Debye温度是从弹性常数计算得出的。我们已经将WTE2的所有计算出的物理特性与同源性Mote2 Weyl半度计的物理特性进行了比较。 WTE2和MOTE2的性质已被比较并对比。 WTE2的计算参数也已与文献中已经可用的参数进行了比较。已经找到了很好的协议。

Td-WTe2 is a topological Weyl semimetal. WTe2 in the orthorhombic structure is stable at room temperature. Elastic, electronic, bonding, and optoelectronic properties of WTe2 have been investigated in detail in this work using the density functional theory. Elastic behaviour together with anisotropy indices of WTe2 have been investigated for the first time. Bonding nature among the constituent atoms and electric field polarization dependent optical constants have also been explored for the first time. WTe2 is elastically anisotropic; optical anisotropy on the other hand is low. The electronic band structure reveals quasi-linear dispersions along certain direction in the Brillouin zone with semi-metallic features. The Fermi level is located at a pseudogap separating bonding and anti-bonding density of states. The electronic effective mass tensor is predicted to be highly direction dependent. The energy dispersion is significantly weaker in the c-direction. The bonding in WTe2 is an admixture of covalent and metallic bonds. Optoelectronic properties show strongly reflecting character over a wide band of photon energies. The compound is a strong absorber of ultraviolet radiation. The Debye temperature has been calculated from the elastic constants. We have compared all the calculated physical properties of WTe2 with those of isostructural MoTe2 Weyl semimetals. The properties of WTe2 and MoTe2 have been compared and contrasted. The calculated parameters of WTe2 have also been compared with those already available in the literature. Very good agreements have been found.

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