几何相位
Valleytronics公司
Berry连接和曲率
凝聚态物理
物理
双层石墨烯
简并能级
塞曼效应
相(物质)
石墨烯
磁场
量子力学
自旋电子学
铁磁性
作者
Ya-Ning Ren,Qiang Cheng,Qing‐Feng Sun,Lin He
标识
DOI:10.1103/physrevlett.128.206805
摘要
The Berry phase plays an important role in determining many physical properties of quantum systems. However, tuning the energy spectrum of a quantum system via Berry phase is comparatively rare because the Berry phase is usually a fixed constant. Here, we report the realization of an unusual valley-polarized energy spectra via continuously tunable Berry phases in Bernal-stacked bilayer graphene quantum dots. In our experiment, the Berry phase of electron orbital states is continuously tuned from about π to 2π by perpendicular magnetic fields. When the Berry phase equals π or 2π, the electron states in the two inequivalent valleys are energetically degenerate. By altering the Berry phase to noninteger multiples of π, large and continuously tunable valley-polarized energy spectra are realized. Our result reveals the Berry phase's essential role in valleytronics and the observed valley splitting, on the order of 10 meV at a magnetic field of 1 T, is about 100 times larger than Zeeman splitting for spin, shedding light on graphene-based valleytronics.
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