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Electron-phonon interaction and breakdown of the adiabatic principle in fullerides and MgB2

机译:电子和声子的相互作用以及富勒分子和MgB2的绝热原理的分解

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Novel materials and superconductors are often characterized by small electron Fermi energies E-F. This situation is expected to give rise to an unconventional electron-phonon phenomenology when the energy scale E-F becomes comparable with other electron-phonon energy scales as the phonon frequencies omega(ph) or the electron phonon matrix elements g(el-ph). In this contribution we show how this scenario is intrinsically related to the violation of two different adiabatic assumptions on which the conventional electron-phonon picture relies, namely the Migdal's theorem and the Born-Oppenheimer principle. Focusing on this latter, and using MgB2 as a textbook example, we show that the Born-Oppenheimer principle can be violated even in quasi-adiabatic systems (omega(ph)/E-F 1) when strong lattice fluctuations are present. Unlike the Migdal's theorem which is related to the ratio coph/EF, we show that these unconventional nonadiabatic effects are ruled by the ratio K = g(el-ph)/E-F, which in MgB2 kappa = 0.91. (c) 2006 Published by Elsevier Ltd.
机译:新型材料和超导体通常以小电子费米能E-F为特征。当能级E-F与声子频率ω或电子声子矩阵元素g(el-ph)的其他电子声子能级具有可比性时,预计这种情况将引起非常规的电子声子现象学。在这篇论文中,我们展示了这种情况与传统电子声子图像所依赖的两个不同绝热假设(即Migdal定理和Born-Oppenheimer原理)的内在联系。着眼于后者,并以MgB2作为教科书示例,我们表明,即使在存在强晶格波动的准绝热系统(omega(ph)/ E-F 1)中,也可能违反Born-Oppenheimer原理。与与比率coph / EF相关的Migdal定理不同,我们证明了这些非常规的非绝热效应是由比率K = g(el-ph)/ E-F决定的,在MgB2 kappa = 0.91中。 (c)2006年由Elsevier Ltd.发布。

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