论文标题

双层石墨烯边缘状态fabry-pérot干涉仪中的Aharonov-bohm振荡

Aharonov-Bohm oscillations in bilayer graphene edge state Fabry-Pérot interferometers

论文作者

Fu, Hailong, Huang, Ke, Watanabe, Kenji, Taniguchi, Takashi, Kayyalha, Morteza, Zhu, Jun

论文摘要

基本激发的电荷和交换统计在量子相干振荡中表现出可以在干涉测量中探索的量子相干振荡。量子厅干涉仪是发现与二维系统的分数和非亚伯利亚人相关的非常规量子统计的主要工具,后者是拓扑量子计算的基础。石墨烯干涉仪提供了新的途径,以探索外来激发的物理,因为它们相对较小的充电能和锋利的限制电位。双层石墨烯具有真正的带隙,可促进量子限制的形成,并表现出最强大的均匀分数分数量子厅状态,该量子可能会容纳非亚伯利亚人。在这里,我们介绍了分裂门控的双层石墨烯fabry-pérot干涉仪以及在多个整数量子厅状态下Aharonov-bohm干扰的实验证据的设计和制造。该设备的多功能性使我们能够研究各种场景,确定边缘状态的速度并评估干涉仪的脱位机制。这些结果为在这个有前途的设备平台中寻求非亚伯统计的方式铺平了道路。

The charge and exchange statistics of an elementary excitation manifest in quantum coherent oscillations that can be explored in interferometry measurements. Quantum Hall interferometers are primary tools to uncover unconventional quantum statistics associated with fractional and non-Abelian anyons of a two-dimensional system, the latter being the foundation of topological quantum computing. Graphene interferometers offer new avenues to explore the physics of exotic excitations due to their relatively small charging energies and sharp confinement potentials. Bilayer graphene possesses a true band gap to facilitate the formation of quantum confinement and exhibits the most robust even-denominator fractional quantum Hall states that may host non-Abelian anyons. Here we present the design and fabrication of a split-gated bilayer graphene Fabry-Pérot interferometer and experimental evidence of Aharonov-Bohm interference at multiple integer quantum Hall states. The versatility of the device allows us to study a wide range of scenarios, determine the velocities of edge states, and assess dephasing mechanisms of the interferometer. These results pave the way to the quest of non-Abelian statistics in this promising device platform.

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