论文标题

在狄拉克点检测石墨烯的发散轨道透明度

Detection of graphene's divergent orbital diamagnetism at the Dirac point

论文作者

Vallejo, J., Wu, N. J., Fermon, C., Pannetier-Lecoeur, M., Wakamura, T., Watanabe, K., Tanigushi, T., Pellegrin, T., Bernard, A., Daddinounou, S., Bouchiat, V., Guéron, S., Ferrier, M., Montambaux, G., Bouchiat, H.

论文摘要

在过去的十年中,已经对石墨烯的电子特性进行了深入研究,并使用传输和光谱实验显示了其线性狄拉克光谱的显着特征的标志。相比之下,石墨烯的轨道磁化是石墨烯电子波函数的特征性浆果相的最基本特征之一,尚未在单个薄片中测量。特别是,在零兴奋剂上对发散的直流电反应的惊人预测要求进行实验测试。使用高度敏感的巨型磁场传感器(GMR),我们测量了氮化硼晶体之间封装的单个石墨烯单层的栅极依赖性磁化。该信号在狄拉克点上表现出磁场峰,其磁场和温度依赖的依赖性与Mc Clure \ cite {McClure1956}的工作开始的理论预测一致。我们的测量值开辟了对石墨烯和2D拓扑材料中轨道电流的新领域,提供了一种新方法来监测浆果相奇异点并探索通过库仑相互作用,应变或莫伊尔电位的联合效应而产生的相关状态。

The electronic properties of graphene have been intensively investigated over the last decade, and signatures of the remarkable features of its linear Dirac spectrum have been displayed using transport and spectroscopy experiments. In contrast, the orbital magnetism of graphene, which is one of the most fundamental signature of the characteristic Berry phase of graphene's electronic wave functions, has not yet been measured in a single flake. In particular, the striking prediction of a divergent diamagnetic response at zero doping calls for an experimental test. Using a highly sensitive Giant Magnetoresistance sensor (GMR) we have measured the gate voltage-dependent magnetization of a single graphene monolayer encapsulated between boron nitride crystals. The signal exhibits a diamagnetic peak at the Dirac point whose magnetic field and temperature dependences agree with theoretical predictions starting from the work of Mc Clure \cite{McClure1956}. Our measurements open a new field of investigation of orbital currents in graphene and 2D topological materials, offering a new means to monitor Berry phase singularities and explore correlated states generated by combined effects of Coulomb interactions, strain or moiré potentials.

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