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Antiadiabatic Theory of Superconducting State Transition: Phonons and Strong Electron Correlations-The Old Physics and New Aspects

机译:超导态跃迁的反绝热理论:声子与强电子相关性-旧物理学和新方面

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摘要

Complex electronic ground state of molecular and solid state system is analyzed on the ab initio level beyond the adiabatic Born- Oppenheimer approximation (BOA). The attention is focused on the band structure fluctuation (BSF) at Fermi level, which is induced by electron-phonon coupling in superconductors, and which is absent in the non-superconducting analogues. The BSF in superconductors results in breakdown of the adiabatic BOA. At these circumstances, chemical potential is substantially reduced and system is stabilized (effect of nuclear dynamics) in the antiadiabatic state at broken symmetry with a gap(s) in one-particle spectrum. Distorted nuclear structure has fluxional character and geometric degeneracy of the antiadiabatic ground state enables formation of mobile bipolarons in real space. It has been shown that an effective attractive e-e interaction (Cooper-pair formation) is in fact correction to electron correlation energy at transition from adiabatic into antiadiabatic ground electronic state. In this respect, Cooper-pair formation is not the primary reason for transition into superconducting state, but it is a consequence of antiadiabatic state formation. It has been shown that thermodynamic properties of system in antiadiabatic state correspond to thermodynamics of superconducting state. Illustrative application of the theory for different types of superconductors is presented.
机译:在绝热的Born-Oppenheimer近似(BOA)之外,从头算水平分析了分子和固态系统的复杂电子基态。注意力集中在费米能级上的带结构起伏(BSF),这是由超导体中的电子-声子耦合引起的,而在非超导类似物中则不存在。超导体中的BSF导致绝热BOA分解。在这些情况下,化学势显着降低,并且系统以稳定的抗绝热状态(破碎的对称性和单粒子谱中的一个或多个缝隙)处于稳定状态(核动力学效应)。畸变的核结构具有通量特征,并且绝热基态的几何简并性使得能够在现实空间中形成可移动的双极化子。已经显示,有效的吸引e-e相互作用(库珀对形成)实际上是对从绝热转变为反绝热基态电子态时的电子相关能的校正。在这方面,库珀对的形成不是过渡到超导状态的主要原因,而是反绝热状态形成的结果。研究表明,系统在绝热状态下的热力学性质与超导状态的热力学相对应。介绍了该理论在不同类型的超导体上的说明性应用。

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