论文标题

激子绝缘子中的集体模式:光学响应中电子 - 音波耦合和签名的影响

Collective Modes in Excitonic Insulators: Effects of Electron-Phonon Coupling and Signatures in Optical Response

论文作者

Murakami, Yuta, Golež, Denis, Kaneko, Tatsuya, Koga, Akihisa, Millis, Andrew J., Werner, Philipp

论文摘要

我们考虑了一个两种无旋转模型,该模型描述了具有各向异性跳跃参数的二维正方形晶格上的激子绝缘子(EI),以及受EI候选ta $ _2 $ _2 $ nise $ _5 $ _5 $ _5 $ _5 $ _5 $ _5 $ _5 $ _5 $。我们系统地研究了有序阶段中集体激发的性质,该阶段源自带库仑的相互作用和El-ph耦合。当有序相仅通过库仑相互作用(纯EI相)稳定时,其集体响应除了振幅模式外还表现出无质量相模式。我们表明,在BEC制度中,振幅模式的信号变得不那么突出,并且与模型频段结构相比,相位模式速度中的各向异性放松。通过耦合到晶格,相位模式获得质量,并且振幅模式的信号变得不那么突出。重要的是,正常半导体相和有序相之间边界处的软化模式的特征取决于参数条件。特别是,我们指出的是,即使对于小于库仑相互作用的EL-PH耦合,在边界处软化至零的模式也可能具有声子字符。我们还讨论了如何在光学电导率中观察到集体模式。此外,我们研究了非局部相互作用对集体模式的影响,并表明了实现间隙模式共存的可能性,并且仅与局部相互作用的单个振幅模式分开了差距模式。

We consider a two-band spinless model describing an excitonic insulator (EI) on the two-dimensional square lattice with anisotropic hopping parameters and electron-phonon (el-ph) coupling, inspired by the EI candidate Ta$_2$NiSe$_5$. We systematically study the nature of the collective excitations in the ordered phase which originates from the interband Coulomb interaction and the el-ph coupling. When the ordered phase is stabilized only by the Coulomb interaction (pure EI phase), its collective response exhibits a massless phase mode in addition to the amplitude mode. We show that in the BEC regime, the signal of the amplitude mode becomes less prominent and that the anisotropy in the phase mode velocities is relaxed compared to the model bandstructure. Through coupling to the lattice, the phase mode acquires a mass and the signal of the amplitude mode becomes less prominent. Importantly, character of the softening mode at the boundary between the normal semiconductor phase and the ordered phase depends on the parameter condition. In particular, we point out that even for el-ph coupling smaller than the Coulomb interaction the mode that softens to zero at the boundary can have a phonon character. We also discuss how the collective modes can be observed in the optical conductivity. Furthermore, we study the effects of nonlocal interactions on the collective modes and show the possibility of realizing a coexistence of an in-gap mode and an above-gap mode split off from the single amplitude mode in the system with the local interaction only.

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