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Generation of Frequency-Multiplied and Phase-Coded Signal Using an Optical Polarization Division Multiplexing Modulator

机译:使用光偏振分多路复用调制器生成倍频和相位编码信号

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摘要

A novel method to generate frequency-multiplied and phase-coded microwave signals based on a polarization division multiplexing (PDM) dual-arm Mach–Zehnder modulator (DMZM) or a PDM dual-parallel MZM (DPMZM) is proposed. In the proposed scheme, the PDM-DMZM or PDM-DPMZM is employed to produce two orthogonally polarized wavelengths with a wavelength spacing that is two, four, or eight times of the driving frequency. Then the signal is sent into a polarization modulator-based microwave photonic phase coder for phase coding. A theoretical analysis and an experiment are carried out. Phase-coded signals with frequency multiplication factors of two, four and eight are successfully generated. The bandwidth of the system is discussed, and the impact of the polarization extinction ratio is also analyzed.
机译:提出了一种新的基于极化分复用(PDM)双臂马赫曾德尔调制器(DMZM)或PDM双重MZM(DPMZM)产生倍频和相位编码微波信号的方法。在提出的方案中,PDM-DMZM或PDM-DPMZM用于产生两个正交偏振波长,其波长间隔是驱动频率的两倍,四倍或八倍。然后将信号发送到基于偏振调制器的微波光子相位编码器中进行相位编码。进行了理论分析和实验。成功生成了具有两个,四个和八个倍频因子的相位编码信号。讨论了系统的带宽,并分析了偏振消光比的影响。

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