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Progress on Waveguide-Integrated Graphene Optoelectronics

机译:波导集成石墨烯光电子的进展

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摘要

Graphene, a single layer of carbon atoms arranged in the form of hexagonal lattice, has many intriguing optical and electrical properties.However, due to the atomic layer thickness, light-matter interactions in themonolayer graphene are naturallyweakwhen the light is normally incident to the material. To overcome this challenge, waveguide-integrated graphene optoelectronic devices have been proposed and demonstrated. In such coplanar configurations, the propagating light in the waveguide can significantly interact with the graphene layer integrated on the surface of the waveguide.The combination of photonic integrated circuits and graphene also enables the development of graphene devices by using silicon photonic technology,which greatly extends the scope of graphene's application.Moreover, the waveguide-integrated graphene devices are fully CMOS-compatible, which makes it possible to achieve low-cost and high-density integration in the future. As a result, the area has been attracting more and more attention in recent years. In this paper, we introduce basic principles and research advances of waveguide-integrated graphene optoelectronics.
机译:图石墨烯,以六边形晶格形式排列的单层碳原子具有许多有趣的光学和电性能。但是,由于原子层厚度,Hemonolayaer石墨烯的浅型相互作用是自然的,当光线通常入射到材料时是自然的。 。为了克服这一挑战,已经提出并证明了波导集成的石墨烯光电器件。在这种共面配置中,波导中的传播光可以显着与集成在波导表面上的石墨烯层相互作用。光子集成电路和石墨烯的组合也能够通过使用硅光子技术开发石墨烯装置,这大大延伸Graphene应用范围的范围.Oore,波导集成的石墨烯装置是完全CMOS兼容的,这使得可以在将来实现低成本和高密度的集成。因此,近年来,该地区一直在吸引越来越多的关注。本文介绍了波导集成石墨烯光电子的基本原理和研究进展。

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