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二维平面带固体中的量子几何振荡。

Quantum Geometric Oscillations in Two-Dimensional Flat-Band Solids.

机构信息

Department of Physics and Astronomy, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.

出版信息

Phys Rev Lett. 2023 Jun 30;130(26):266601. doi: 10.1103/PhysRevLett.130.266601.

Abstract

Two-dimensional van der Waals heterostructures can be engineered into artificial superlattices that host flat bands with significant Berry curvature and provide a favorable environment for the emergence of novel electron dynamics. In particular, the Berry curvature can induce an oscillating trajectory of an electron wave packet transverse to an applied static electric field. Though analogous to Bloch oscillations, this novel oscillatory behavior is driven entirely by quantum geometry in momentum space instead of band dispersion. While the current from Bloch oscillations can be localized by increasing field strength, the current from the geometric orbits saturates to a nonzero plateau in the strong-field limit. In nonmagnetic materials, the geometric oscillations are even under inversion of the applied field, whereas the Bloch oscillations are odd, a property that can be used to distinguish these two coexisting effects.

摘要

二维范德华异质结构可以被设计成人工超晶格,其中包含具有显著 Berry 曲率的平带,为新颖电子动力学的出现提供了有利环境。特别是,Berry 曲率可以诱导电子波包在横向施加的静态电场中的振荡轨迹。尽管类似于 Bloch 振荡,但这种新的振荡行为完全由动量空间中的量子几何驱动,而不是由能带色散驱动。虽然 Bloch 振荡的电流可以通过增加场强来局域化,但几何轨道的电流在强场极限下饱和到非零平台。在非磁性材料中,即使施加的场反转,几何振荡也是偶数,而 Bloch 振荡是奇数,这种性质可用于区分这两种共存的效应。

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