朗道量子化
石墨烯
凝聚态物理
扫描隧道显微镜
量化(信号处理)
迪拉克费米子
单层
扫描隧道光谱
量子隧道
堆积
双层石墨烯
材料科学
物理
电子
量子力学
纳米技术
核磁共振
计算机科学
计算机视觉
作者
Long‐Jing Yin,Ke-Ke Bai,Wen-Xiao Wang,Siyu Li,Yu Zhang,Lin He
标识
DOI:10.1007/s11467-017-0655-0
摘要
When electrons are confined in a two-dimensional (2D) system, typical quantum–mechanical phenomena such as Landau quantization can be detected. Graphene systems, including the single atomic layer and few-layer stacked crystals, are ideal 2D materials for studying a variety of quantum–mechanical problems. In this article, we review the experimental progress in the unusual Landau quantized behaviors of Dirac fermions in monolayer and multilayer graphene by using scanning tunneling microscopy (STM) and scanning tunneling spectroscopy (STS). Through STS measurement of the strong magnetic fields, distinct Landau-level spectra and rich level-splitting phenomena are observed in different graphene layers. These unique properties provide an effective method for identifying the number of layers, as well as the stacking orders, and investigating the fundamentally physical phenomena of graphene. Moreover, in the presence of a strain and charged defects, the Landau quantization of graphene can be significantly modified, leading to unusual spectroscopic and electronic properties.
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