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All-Optical Cross-Bar Switch Based on a Low-Loss Suspended Graphene Plasmonic Coupler

机译:全光跨杆开关基于低损耗悬挂的石墨烯等级耦合器

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摘要

Graphene-based optical switches are one of the promising building blocks for future optical integrated circuits. For the first time in this paper, a novel all-optical graphene-based cross-bar switch is proposed. The structure is based on our recently reported suspended graphene plasmonic coupler. The high carrier mobility of the suspended graphene layer results in long propagation lengths of surface plasmon polaritons that are essential for realizing cross-bar optical switching. Dispersion relations of surface plasmon polaritons of a simple suspended graphene-based structure are derived in the nonlinear state. The relations are employed to analyze the device using the effective index method (EIM) that reduces the time and memory requirements, significantly. The switching length at the wavelength of 10m is as short as 2.6m. The required optical pump intensity is calculated as approximately 77MW/cm(2). The switching operation of the structure is investigated using the finite-difference time-domain method. According to the presented results, extinction ratios of as high as 11.18 and 11.1dB are obtained at the bar and cross output ports, respectively. A wide spectral width of more than 1m is also calculated. Finally, the transient response of the structure is investigated and the switching time of less than 3ps is predictable.
机译:基于石墨烯的光学开关是未来光学集成电路的有希望的构建块之一。本文首次提出了一种新型全光学石墨烯的跨杆开关。该结构基于我们最近报告的悬浮石墨烯等级耦合器。悬浮的石墨烯层的高载流子迁移率导致长度的表面等离子体极性官长,这对于实现跨杆光学切换是必不可少的。在非线性状态下衍生出简单的悬浮石墨烯基结构的表面等离子体极性恒星的分散关系。采用关系分析了使用有效索引方法(EIM)来分析设备,从而显着降低了时间和内存要求。波长为10m的开关长度短至2.6米。所需的光学泵强度计算为约77mW / cm(2)。使用有限差分时间域方法研究结构的切换操作。根据所提出的结果,分别在杆和交叉输出端口处获得高达11.18和11.1db的消光比。还计算了宽的谱宽度超过1M。最后,研究了结构的瞬态响应,并且少于3ps的切换时间是可预测的。

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