Linear and Nonlinear Terahertz Three-Dimensional Dirac Nano-Plasmonic Waveguides

H. C. Law, K. Ooi, M. Bhuiyan, Y. Ang
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Abstract

Graphene's exceptional features in electronics and optics are asserted to manifest in its “two-dimensional (2-D) Dirac” nature. However, good integration of graphene with current optical materials seems elusive due to its thin film structure, and its delicate 2-D optical properties may be destroyed in the integration process. Here, three-dimensional (3-D) Dirac materials like cadmium arsenide may be a good contender as a graphene plasmonics substitute. We compare and contrast the optical properties of 3-D Dirac materials with graphene in this paper. 3-D Dirac materials has the potential to become the cornerstone for Internet-of-Things device applications.
线性和非线性太赫兹三维狄拉克纳米等离子体波导
石墨烯在电子学和光学方面的特殊特性被认为体现在其“二维(2-D)狄拉克”性质上。然而,由于石墨烯的薄膜结构,其与现有光学材料的良好集成似乎难以实现,并且在集成过程中可能会破坏其微妙的二维光学特性。在这里,三维(3-D)狄拉克材料,如砷化镉,可能是石墨烯等离子体替代品的一个很好的竞争者。本文对三维狄拉克材料与石墨烯的光学性质进行了比较。3-D狄拉克材料有潜力成为物联网设备应用的基石。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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