Chen Hao, Xu Zuowei, Fu Hongyan, Zhang Shiwei, Wu Congxian, Wu Hao, Xu Huiying, Cai Zhiping
Opt Express. 2015 Apr 20;23(8):9835-43. doi: 10.1364/OE.23.009835.
In this paper, a novel approach to implement switchable and tunable microwave frequency multiplication has been proposed and experimentally demonstrated. High order harmonics of microwave signal with external modulation technique can be selected by using a novel switchable dual-passband microwave photonic filter (MPF) based on a modified fiber Mach-Zehnder interferometer (FMZI) and a dispersive medium. By adjusting the polarization controllers in the modified FMZI, the passbands of the MPF can switch between lower frequency, higher frequency or dual-passband states, and by changing the length of the variable optical delay line (VODL) in the modified FMZI, the central frequencies of these passbands can also be tuned. Therefore, tunable and switchable microwave signal frequency multiplication can be achieved. The experimental results show that by modulating a driving signal with frequency of 2.5 GHz, a signal with frequency of 7.5 GHz, which is three times of the driving frequency, the other one with the frequency of 15 GHz, which is six times of the driving frequency can be generated and freely switchable between two frequencies and dual frequency states by simply adjusting the polarization controllers in the modified FMZI.
本文提出并通过实验验证了一种实现可切换和可调谐微波倍频的新方法。利用基于改进型光纤马赫曾德尔干涉仪(FMZI)和色散介质的新型可切换双通带微波光子滤波器(MPF),可以通过外部调制技术选择微波信号的高阶谐波。通过调整改进型FMZI中的偏振控制器,MPF的通带可以在低频、高频或双通带状态之间切换,并且通过改变改进型FMZI中可变光延迟线(VODL)的长度,这些通带的中心频率也可以被调谐。因此,可以实现可调谐和可切换的微波信号倍频。实验结果表明,通过调制频率为2.5 GHz的驱动信号,可以产生频率为7.5 GHz(驱动频率的三倍)的信号以及频率为15 GHz(驱动频率的六倍)的另一个信号,并且通过简单地调整改进型FMZI中的偏振控制器,可以在两个频率和双频状态之间自由切换。