拓扑绝缘体
物理
量子
纳米技术
工程物理
极化(电化学)
迪拉克费米子
光伏系统
量子点
量子光学
量子技术
材料科学
领域(数学)
多样性(控制论)
角动量
电子
表面状态
Dirac(视频压缩格式)
宏观量子现象
光学物理学
绝缘体(电)
光电子学
量子传感器
平面的
无质量粒子
自旋(空气动力学)
表征(材料科学)
量子信息科学
领域(数学分析)
作者
Xin Li,Hui Lü,Runze Li,Zhengfen Wan,Xiaolin Wang,Salvatore Macis,S. Lupi,Min Gu,Hongxia Wang,Z. Yue
摘要
Topological insulators (TIs) are emerging quantum materials with insulating bulk and topologically protected metallic surface states. The electrons in the surface state are massless Dirac fermions with full spin polarization and are protected from backscattering. Due to this unique electronic structure, they exhibit novel optoelectronic properties and a variety of quantum effects. These distinctive properties make TIs potential candidates for applications in low-energy-consumption electronic devices, quantum computing, and low-loss optoelectronic devices. The unique optical properties of TIs have advanced considerably the development of plasmon-enhanced photovoltaic devices, ultrathin holograms, optical angular momentum nanometrology, and planar lenses. These developments underscore how TIs are setting new benchmarks in the optoelectronic domain and demonstrate the broad applicability of these materials. This comprehensive overview of recent progress in the field of TI optics emphasizes the wide range of applications of various compounds and showcases their exceptional performance. We introduce the optical properties of TIs and explore the performances of many devices based on these materials. On the latter subject, we discuss the innovative structures on which they are based, highlight potential directions for experimental innovations and device development, and consider their significance in both fundamental research and practical applications.
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