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Sandwiched graphene/hBN/graphene photonic crystal fibers with high electro-optical modulation depth and speed

机译:夹在石墨烯/ hBN /石墨烯光子晶体纤维具有高电光调制深度和速度

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摘要

Graphene-photonic crystal fibers (PCFs) are obtained by integrating the broadband optical response and electro-optic tunability of graphene with the high-quality waveguide capacity and easy-integrability of the PCF, and this has been proven to be an important step towards multimaterial multifunctional fiber and all-fiber integrated circuits. However, the reported electro-optic modulator based on directly-grown graphene-PCF suffers from very low response speed (below 100 Hz) due to the slow response of ionic liquid. Here, we propose new functional PCFs with a sandwiched graphene/hBN/graphene (Gr/hBN/Gr) film attached to the hole walls of the fibers, and theoretically demonstrate that the in-line modulator based on it can achieve simultaneous single-mode transmission ranging from 1260 nm to 1700 nm (covering all optical communication bands), significant modulation depth (e.g.similar to 42 dB mm(-1)at 1550 nm) and high modulation speed (up to similar to 0.1 GHz). Furthermore, various device functions can be designed by changing the structure of the fiber, including the length, the hole diameter and the layer numbers of graphene and hBN films. This proposed approach directs a viable path to obtain high-performance all-fiber devices based on hybrid two-dimensional material optical fibers.
机译:Graphene-photonic晶体纤维(pcf)通过整合宽带光学石墨烯的反应和电光可调谐性高质量的波导能力和easy-integrability PCF的,这是被证明是一个重要的一步复合多功能纤维和全光纤集成电路。基于directly-grown电光调制器graphene-PCF患有响应速度很低(低于100赫兹)由于离子的反应迟缓液体。多层石墨烯/ hBN /石墨烯(Gr / hBN / Gr)膜附着在孔壁的纤维,并从理论上证明内联调制器基于它可以实现同步单模传播从1260纳米到1700海里(覆盖所有光通信乐队),重要的调制深度(e.g.similardB 42毫米(1)在1550 nm)和高调制速度(类似于0.1 GHz)。可以设计的各种设备的功能改变纤维的结构,包括长度,孔直径和层石墨烯和hBN电影的数量。方法将获得一个可行的路径基于高性能的全光纤设备混合二维光纤材料。

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