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Microcavity-integrated graphene waveguide: a reconfigurable electro-optical attenuator and switch

机译:微腔集成石墨烯波导:可重新配置的电光衰减器和开关

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摘要

Graphene has been widely utilized in optoelectronic applications due to its high carrier mobility, and extremely fast optical response. Microcavity-integrated graphene waveguide structure is one basic module of integrated photonic devices which can greatly improve the light-matter interaction strength. The enhanced optical absorption in the undoped graphene layer results from the light trapping and the corresponding long light-graphene interaction length. Tuning the Fermi energy level of the graphene layer enables the electro-optical modulation. We report the realization of reconfigurable electro-optical attenuator and switch with unity-order modulation depth in light reflection and transmission at near-infrared frequency. The transformation from a lossy absorber to a quasi-perfect transparent condition of the monolayer graphene by tuning the Fermi level leads to the unity-order tunability of the electro-optical attenuator and switch. We investigate theoretically and numerically the absorption properties of the designed microcavity-integrated graphene with respect to different graphene Fermi levels. Electro-optical attenuator with attenuating coefficient from 10% to 98.29% is fulfilled. On-off electro-optical switching with a switching contrast larger than 21 dB is demonstrated. Our approach provides the possibilities of graphene photonics applied in communications, and sensing.
机译:石墨烯因其高的载流子迁移率和极快的光学响应而被广泛用于光电应用中。微腔集成石墨烯波导结构是集成光子器件的基本模块之一,可以大大提高光物质相互作用强度。未掺杂的石墨烯层中增强的光吸收是由光捕获和相应的长的光-石墨烯相互作用长度引起的。调节石墨烯层的费米能级可实现电光调制。我们报告了可重构电光衰减器的实现以及在近红外频率下光反射和传输中具有单位阶调制深度的开关。通过调节费米能级,从有损吸收体到单层石墨烯的准完全透明状态的转换会导致电光衰减器和开关的单位阶可调性。我们在理论和数值上研究了设计的微腔集成石墨烯对不同石墨烯费米能级的吸收特性。实现了衰减系数从10%到98.29%的电光衰减器。演示了开关对比度大于21 dB的通断电光开关。我们的方法提供了将石墨烯光子学应用于通信和传感的可能性。

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