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Filter-free photonic generation of dual-chirp microwave waveform with frequency and bandwidth multiplication

机译:无滤光光子生成双啁啾微波波形,具有频率和带宽乘法

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An approach for photonic generation dual-chirp microwave waveform (DCMW) with frequency and bandwidth multiplication without filtering is proposed and demonstrated. A continuous-wave (CW) optical signal is sent to a polarization division multiplexing modulator. In the modulator, one part of the CW optical signal is modulated by the radio-frequency (RF) driving signals to generate ±2 nd-order single-frequency sidebands, while another one is modulated by the baseband chirped signals to generate ±2 nd-order chirped sidebands. After that, a frequency-doubled and bandwidth-quadrupled DCMW can be generated by photoelectric balanced detection. In the simulation experiments, by using a RF driving signal at 5GHz and a baseband single-chirp signal with bandwidth of 0.5GHz as the input electrical signals, a DCMW with central frequency of 10GHz and bandwidth of 2GHz is generated.
机译:提出了一种具有频率和带宽乘法的光子生成双Chirp微波波形(DCMW)的方法,并展示了没有滤波的倍增。将连续波(CW)光信号发送到偏振分频复用调制器。在调制器中,CW光信号的一部分由射频(RF)驱动信号调制以产生±2 ND级单频带边带,而另一个是由基带啁啾信号调制以生成±2 ND - 啁啾边带。之后,可以通过光电平衡检测生成频率加倍和带宽 - 四嵌段DCMW。在仿真实验中,通过使用5GHz的RF驱动信号和带宽为0.5GHz的基带单啁啾信号作为输入电信号,产生具有10GHz的中央频率和2GHz带宽的DCMW。

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