论文标题

纳米管量子模拟器中的稳态PEIERLS过渡

Steady-state Peierls transition in nanotube quantum simulator

论文作者

Zhang, Lin, Bhattacharya, Utso, Bachtold, Adrian, Forstner, Stefan, Lewenstein, Maciej, Pistolesi, Fabio, Grass, Tobias

论文摘要

沿振动纳米管放置的量子点提供了一个量子模拟平台,该平台可以直接解决电子 - phonon相互作用。这为搜索新量子材料和强大相关效应的研究提供了有希望的前景。由于该平台是通过将点与电子储层耦合来自然运行的,因此状态准备是通过行驶进入稳态来直接实现的。在这里,我们表明,对于中间电子波耦合强度,带有自旋极化量子点的系统将PEIERLS过渡到绝缘状态,该系统在稳态下表现出电荷密度波顺序,这是由于电子库仑排斥相互作用与声音诱导的有吸引力的相互作用之间的竞争。可以直接观察到传输现象是电子相关性的指纹。我们还提出了强大的方法,可以在数值上捕获大量声子上这种开放的电子音纸系统的物理。我们的工作铺平了研究和检测纳米管量子模拟器中相关电子物理学相关的方法,并使用当前的实验可访问技术。

Quantum dots placed along a vibrating nanotube provide a quantum simulation platform that can directly address the electron-phonon interaction. This offers promising prospects for the search of new quantum materials and the study of strong correlation effects. As this platform is naturally operated by coupling the dots to an electronic reservoir, state preparation is straightforwardly achieved by driving into the steady state. Here we show that for intermediate electron-phonon coupling strength, the system with spin-polarized quantum dots undergoes a Peierls transition into an insulating regime which exhibits charge-density wave order in the steady state as a consequence of the competition between electronic Coulomb repulsive interactions and phonon-induced attractive interactions. The transport phenomena can be directly observed as fingerprints of electronic correlations. We also present powerful methods to numerically capture the physics of such an open electron-phonon system at large numbers of phonons. Our work paves the way to study and detect correlated electron-phonon physics in the nanotube quantum simulator with current experimentally accessible techniques.

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