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First-principles study of electronic structure, phonons and electron-phonon interaction in hexagonal PdTe

机译:六角形PdTe中电子结构,声子和电子-声子相互作用的第一性原理研究

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The electronic structure, phonons and electron-phonon interaction of hexagonal PdTe have been investigated in detail by employing a plane wave pseudopotential method and a linear-response scheme within Local Density Approximation (LDA) and Generalized Gradient Approximation (GGA). Consistent with available theoretical and experimental results, it has been found that the intermediate strength electron-phonon coupling constant (lambda) with the calculated value of 0.542 on the LDA and 0.648 on the GGA is due to the coupling of phonons from Pd and Te atoms and electrons from Pd-d and Te-p states. Through comparison, the calculations on the GGA produce better quality than that on the LDA. On the basis of appropriate Coulomb pseudopotential (mu*) and lambda of 0.648 together with experimental Debye temperature (Theta), via the McMillan formula, the superconducting transition temperature with the value of 4.5 K is obtained, same to the experimental value. The results indicate that conventional electron-phonon coupling mechanism can explain the superconductivity in this compound. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过在局部密度近似(LDA)和广义梯度近似(GGA)中采用平面波伪势方法和线性响应方案,详细研究了六角形PdTe的电子结构,声子和电子-声子相互作用。与现有的理论和实验结果一致,已经发现,LDA的中等强度电子-声子耦合常数(lambda)的计算值为0.542,GGA的中等强度电子-声子的耦合常数为0.648,这是由于Pd和Te原子的声子耦合引起的以及来自Pd-d和Te-p态的电子。通过比较,GGA的计算质量比LDA更好。在适当的库仑伪电势(mu *)和λ为0.648以及实验德拜温度(Theta)的基础上,通过McMillan公式,获得了4.5 K的超导转变温度,与实验值相同。结果表明,常规的电子-声子耦合机理可以解释该化合物的超导性。 (C)2015 Elsevier B.V.保留所有权利。

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