论文标题

在逼真的电子系统的现实模型中的极化子变换

Polaron transformations in the realistic model of the strongly correlated electron system

论文作者

Shneyder, E. I., Nikolaev, S. V., Zotova, M. V., Kaldin, R. A., Ovchinnikov, S. G.

论文摘要

电子 - 音波耦合,对角线在真实空间配方中,导致偏极变化的层状。然而,如果考虑到非对角线配对,就会发生基本变化,即极性的奇异行为。对于实际模型而言,对物质转化和相关特性的研究特别令人感兴趣,因为在存在其他强相互作用的情况下,对角线和非对角线电子 - phonon贡献之间的竞争可能会导致系统的非常规行为。在这里,我们考虑了具有电子 - phonon相互作用的Cuprate超导体的多播PD模型,并分析了由对角和非二元基电子 - phonon贡献在强电子相关的极限下引起的系统的特征。使用广义紧密结合方法的二极化版本,我们描述了带结构,费米表面,费米水平的状态密度以及电子音波参数空间中的声子频谱函数,范围从弱弱到坚固的偶联强度的绝热极限。在极化性质的相图上,我们揭示了两个量子相变,并显示电子 - phonon相互作用如何引起费米表面转化(i)从孔口袋到费米弧,以及(ii)从孔到电子电导率类型。我们还证明了新状态在极化子的声子频谱功能中的出现并讨论其起源。

Electron-phonon coupling, diagonal in a real space formulation, leads to polaron paradigm of smoothly varying properties. However, fundamental changes, namely the singular behavior of polarons, occur if non-diagonal pairing is involved into consideration. The study of polaron transformations and related properties of matter is of particular interest for realistic models, since competition between diagonal and non-diagonal electron-phonon contributions in the presence of other strong interactions can result in unconventional behavior of the system. Here we consider the multiband pd-model of cuprate superconductors with electron-phonon interaction and analyze the features of the systems that are caused by the competition of diagonal and non-diagonal electron-phonon contributions in the limit of strong electron correlations. Using the polaronic version of the generalized tight-binding method, we describe the evolution of the band structure, Fermi surface, density of states at Fermi level, and phonon spectral function in the space of electron-phonon parameters ranging from weak to strong coupling strength of the adiabatic limit. On the phase diagram of polaron properties we reveal two quantum phase transitions and show how electron-phonon interaction gives rise to Fermi surface transformation (i) from hole pockets to Fermi arcs and (ii) from hole to electron type of conductivity. We also demonstrate the emergence of new states in the phonon spectral function of the polaron and discuss their origin.

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