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Mass enhancement parameter in free-standing ultrathin Pb(111) films: The effect of spin-orbit coupling

机译:自立超薄Pb(111)薄膜的质量增强参数:自旋轨道耦合的影响

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摘要

The influence of spin-orbit interaction on the electron-phonon coupling strength at the Fermi level of thin lead films is investigated using first-principles calculations in the density functional perturbation formalism. The calculations both scalar relativistic and including spin-orbit coupling (SOC) have been carried out for free-standing Pb(111) films consisting of four to ten atomic layers. It is shown that the spin-orbit interaction produces a large enhancement of the electron-phonon coupling strength regardless of the film thickness. This partly reflects a strong SOC-induced softening of the film phonon spectra, and partly a SOC-mediated increase in electron-phonon coupling matrix elements. For thin films, quantum size effects result in pronounced oscillations of the average coupling constant with the number of layers, which become damped for thicker films. © 2013 American Physical Society.
机译:在密度泛函摄动形式中使用第一性原理计算,研究了自旋轨道相互作用对薄膜费米能级上电子-声子耦合强度的影响。标量相对论和自旋轨道耦合(SOC)的计算都是针对由四到十个原子层组成的自支撑式Pb(111)薄膜进行的。结果表明,自旋轨道相互作用产生了很大的电子-声子耦合强度的增强,而与膜厚无关。这部分反映了薄膜声子光谱强烈SOC诱导的软化,部分反映了电子-声子耦合矩阵元素中SOC介导的增加。对于薄膜,量子尺寸效应导致平均耦合常数随层数的明显振荡,这对于较厚的膜将变得衰减。 ©2013美国物理学会。

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