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Photonics-Based Microwave Switching Using Optical Single Sideband Wavelength Conversion in a Semiconductor Optical Amplifier

机译:在半导体光放大器中使用光单边带波长转换的基于光子的微波开关

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摘要

Photonics-based microwave switching using optical single sideband (OSSB) wavelength conversion in a semiconductor optical amplifier (SOA) is proposed and demonstrated. By using the joint four-wave mixing and self-phase modulation effects in the SOA, the scheme can simultaneously realize the OSSB signal generation and photonic microwave switching, which can minimize the switching crosstalk, since the OSSB signal occupies the least optical bandwidth. This method is also simple as only a single SOA is required. Photonic switching of a 200-Mb/s 16-QAM signal centered at 20 GHz is performed. The signal after switching is an OSSB signal, which has a 22.65- or 17.85-dB sideband suppression ratio for switching based on wavelength down- or up-conversion, respectively. An investigation with the switched signals to combat the dispersion-induced power fading effect for radio over fiber application is also taken. Performance dependence of the optical pump and probe powers, the optical probe-pump power ratio, the modulation depth of the probe signal, and the SOA bias current are also investigated and analyzed.
机译:提出并证明了在半导体光放大器(SOA)中使用光单边带(OSSB)波长转换的基于光子的微波切换。通过在SOA中使用联合四波混频和自相位调制效果,该方案可以同时实现OSSB信号生成和光子微波切换,这可以最小化切换串扰,因为OSSB信号占用的光带宽最小。该方法也很简单,因为只需要一个SOA。对以20 GHz为中心的200 Mb / s 16-QAM信号进行光子切换。切换后的信号是OSSB信号,它具有22.65 dB或17.85 dB的边带抑制比,分别用于基于波长下转换或上转换的开关。还对开关信号进行了研究,以克服色散引起的功率衰减对光纤无线电的应用。还研究和分析了光泵和探头功率,探头光泵功率比,探头信号的调制深度和SOA偏置电流的性能依赖性。

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