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PDM Signal Amplification Using PPLN-Based Polarization-Independent Phase-Sensitive Amplifier

机译:使用基于PPLN的偏振无关相位敏感放大器的PDM信号放大

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摘要

We demonstrate the first polarization-independent phase-sensitive amplification of a polarization-division multiplexing (PDM) signal. A novel polarization-diversity loop configuration using periodically poled LiNbO waveguides is proposed to achieve the polarization-independent amplification of both a single-polarized signal and a PDM signal. The proposed configuration provides two independent optical parametric amplification processes for two orthogonal polarization components in the loop, while preventing the amplification of the reflection noise by a counter-propagating pump. Polarization-independent error-free operation was confirmed with a bit-error-rate measurement for a 40-Gb/s quadrature phase-shift keying (QPSK) signal. We then demonstrated the phase regenerative amplification of an 80-Gb/s PDM-QPSK signal with artificial phase noise.
机译:我们演示了偏振分复用(PDM)信号的第一个偏振无关的相敏放大。提出了一种使用周期性极化LiNbO波导的新型极化分集回路配置,以实现单极化信号和PDM信号的极化无关放大。所提出的配置为环路中的两个正交偏振分量提供了两个独立的光学参量放大过程,同时防止了反向传播泵对反射噪声的放大。通过对40 Gb / s正交相移键控(QPSK)信号进行误码率测量,证实了偏振无关的无误操作。然后,我们演示了具有人工相位噪声的80 Gb / s PDM-QPSK信号的相位再生放大。

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