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首页> 外文期刊>Photonics Journal, IEEE >Saturable Absorption by Vertically Inserted or Overlaid Monolayer Graphene in Optical Waveguide for All-Optical Switching Circuit
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Saturable Absorption by Vertically Inserted or Overlaid Monolayer Graphene in Optical Waveguide for All-Optical Switching Circuit

机译:全光开关电路中光波导中垂直插入或叠加的单层石墨烯的饱和吸收

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摘要

Optical saturable absorption through a monolayer graphene vertically inserted between fibers and overlaid on an ion-exchanged waveguide was measured for picosecond switching application. In our proposed switch, complete switching is performed by controlling the signal light amplitude with the configuration of two cascaded Mach-Zehnder interferometers. To control the signal light amplitude, we use saturable absorption in graphene. For switching, the modulation depth of the amplitude is required to be 2.414, which corresponds to 7.65 dB in intensity. The modulation depth of absorption larger than 10 dB was experimentally obtained in the graphene-loaded waveguide with length of 7 mm.
机译:测量了通过垂直插入纤维之间并覆盖在离子交换波导上的单层石墨烯的光饱和吸收,用于皮秒切换应用。在我们提出的开关中,通过使用两个级联的Mach-Zehnder干涉仪的配置来控制信号光的幅度来执行完整的开关。为了控制信号光的幅度,我们在石墨烯中使用了饱和吸收。对于切换,要求振幅的调制深度为2.414,这对应于强度7.65 dB。在长度为7 mm的石墨烯负载波导中,通过实验获得了大于10 dB的吸收调制深度。

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