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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Tunable electro-optic analog-to-digital converter using graphene nanoshells in photonic crystal ring resonators
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Tunable electro-optic analog-to-digital converter using graphene nanoshells in photonic crystal ring resonators

机译:使用石墨烯纳米型在光子晶环谐振器中的可调谐电光模数转换器

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摘要

In this paper, we propose a novel design of a tunable electro-optic analog-to-digital converter. The proposed structure consists of a tunable three-channel demultiplexer and an optical encoder. The first part provides sampling and quantization of the input electrical analog signal based on the applied potential to the graphene nanoshells (GNSs), while the second part converts the quantized levels into two-bit binary code. The electro-optic demultiplexer is realized using three GNS-based photonic crystal resonant cavities and can be tuned by applying different biasing of the gate voltage to the GNSs. For appropriate chemical potential values of GNS, each resonant cavity can drop the optical beam into its corresponding output port. This tunable ultrafast device supports a maximum sampling rate of up to 222 GS/s, whereas its compact footprint is about 692 mu m(2). The proposed device opens a new window to the design and fabrication of tunable graphene-based photonic crystal circuits to develop electro-optic on-chip processing systems. (C) 2021 Optical Society of America
机译:本文提出了一种新颖的可调谐电光模数转换器的设计方案。该结构由一个可调谐的三通道解复用器和一个光学编码器组成。第一部分基于对石墨烯纳米壳(GNSs)施加的电势提供输入电模拟信号的采样和量化,而第二部分将量化电平转换为两位二进制代码。电光解复用器由三个基于GNS的光子晶体谐振腔实现,可以通过对GNS施加不同的栅极电压偏置来调谐。对于合适的GNS化学势值,每个谐振腔都可以将光束放入相应的输出端口。这种可调谐的超快设备支持最高222 GS/s的采样率,而其紧凑的占地面积约为692μm(2)。该器件为基于石墨烯的可调谐光子晶体电路的设计和制造打开了一扇新的窗口,以开发电光片上处理系统。(2021)美国光学学会

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