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首页> 外文期刊>Optics Letters >All-optical generation of binary phase-coded microwave signal based on cross-polarization modulation in a highly nonlinear fiber
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All-optical generation of binary phase-coded microwave signal based on cross-polarization modulation in a highly nonlinear fiber

机译:在高度非线性光纤中基于交叉极化调制的全光二进制相位编码微波信号生成

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摘要

We report a novel all-optical approach to generate a binary phase-coded microwave signal based on a cross-polarization modulation effect in a highly nonlinear fiber. The carrier frequency of the binary phase-coded microwave signal is widely tunable. Moreover, the precise π phase shift of the microwave signal is independent of the optical power of the control beam. The proposed approach is theoretically analyzed and experimentally verified. For a proof-of-concept demonstration, the binary phase-coded microwave signals with a carrier frequency of 20 GHz at a coding rate of 5 Gb/s and with a carrier frequency of 30 GHz at a coding rate of 7.5 Gb/s are experimentally generated. The pulse compression capability of the system is also evaluated. The measured and simulated results fit well with each other.
机译:我们报告了一种新型的全光方法,该方法基于高度非线性光纤中的交叉极化调制效应来生成二进制相位编码的微波信号。二进制相位编码微波信号的载波频率可广泛调节。此外,微波信号的精确π相移与控制光束的光功率无关。从理论上分析和实验验证了该方法的有效性。为了进行概念验证,将二进制频率编码的微波信号以5 Gb / s的编码速率以20 GHz的载波频率和以7.5 Gb / s的编码速率以30 GHz的载波频率进行编码。实验生成。还评估了系统的脉冲压缩能力。测量结果和模拟结果相互吻合。

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