论文标题

电子 - 音波驱动的三维金属性在绝缘粉末中

Electron-Phonon-Driven Three-Dimensional Metallicity in an Insulating Cuprate

论文作者

Baldini, Edoardo, Sentef, Michael A., Acharya, Swagata, Brumme, Thomas, Sheveleva, Evgeniia, Lyzwa, Fryderyk, Pomjakushina, Ekaterina, Bernhard, Christian, van Schilfgaarde, Mark, Carbone, Fabrizio, Rubio, Angel, Weber, Cedric

论文摘要

尽管经过数十年的理论和实验性努力,晶体晶格在铜酸和其他高温超导体中的电子特性仍然存在争议。尽管强电子相关性的范式表明绝缘体到金属转变背后的纯电子机制,但最近也强调了电子电子和电子 - 光子相互作用的相互增强及其与阶相的相关性。在这里,我们结合了极化分辨的超快光谱和最新的动态均值场理论,以显示晶格在原型不封闭库酸酯中相关绝缘状态的分解中的重要性。我们在构建电荷光接头的三维金属状态期间,确定电子音波耦合到特定的完全对称光学模式的签名。沿相关声子坐标相干移位的晶体结构的计算表明,尽管看似较大的电荷转移能量尺度,绝缘状态对于金属化非常不稳定。该迄今未观察到的绝缘体到金属过渡,由完全对称的晶格模式介导,可以在众多相关固体中找到广泛的应用。

The role of the crystal lattice for the electronic properties of cuprates and other high-temperature superconductors remains controversial despite decades of theoretical and experimental efforts. While the paradigm of strong electronic correlations suggests a purely electronic mechanism behind the insulator-to-metal transition, recently the mutual enhancement of the electron-electron and the electron-phonon interaction and its relevance to the formation of the ordered phases have also been emphasized. Here, we combine polarization-resolved ultrafast optical spectroscopy and state-of-the-art dynamical mean-field theory to show the importance of the crystal lattice in the breakdown of the correlated insulating state in an archetypal undoped cuprate. We identify signatures of electron-phonon coupling to specific fully-symmetric optical modes during the build-up of a three-dimensional metallic state that follows charge photodoping. Calculations for coherently displaced crystal structures along the relevant phonon coordinates indicate that the insulating state is remarkably unstable toward metallization despite the seemingly large charge-transfer energy scale. This hitherto unobserved insulator-to-metal transition mediated by fully-symmetric lattice modes can find extensive application in a plethora of correlated solids.

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