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Microwave photonic frequency down-conversion link based on intensity and phase paralleled modulation

机译:基于强度和相平行调制的微波光子频率下转换链路

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A photonic microwave down-conversion approach is proposed and experimentally demonstrated based on a Mach-Zehnder modulator paralleled with a phase modulator. The incident radio frequency signal and the local oscillator signal are feed to the MZM and PM, respectively, and these two modulated optical signals interfere in the coupler. The useless higher-order sidebands are removed by a tunable optical band-pass filter. The principle of microwave frequency down-conversion is analyzed theoretically, the MZM and PM paralleled frequency down-conversion system is built. Then the performance of system is tested, and the experimental results show that the spurious-free dynamic range achieves 104.8 dB·Hz~(2/3). Compared to the conventional MZM-MZM cascaded system, the SFDR has been improved by 16 dB. The MZM and PM paralleled frequency down-conversion system can balance the intensity of the two coherent beams easily, and only single DC bias is needed. The proposed method possesses simple structure and high dynamic range.
机译:提出了一种光子微波下转换方法,并基于与相位调制器平行的Mach-Zehnder调制器进行实验证明。入射射频信号和本地振荡器信号分别馈送到MZM和PM,并且这两个调制光信号干扰耦合器。通过可调谐光带过滤器去除无用的高阶边带。理论上分析了微波频率下转换的原理,建立了MZM和PM并联频率下转换系统。然后测试系统的性能,实验结果表明,无杂散的动态范围达到104.8dB·Hz〜(2/3)。与传统的MZM-MZM级联系统相比,SFDR得到了16dB的提高。 MZM和PM并联频率下转换系统可以容易地平衡两个相干光束的强度,并且只需要单个DC偏压。该方法具有简单的结构和高动态范围。

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