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A Novel Phase-Locking-Free Phase Sensitive Amplifier-Based Regenerator

机译:基于新型无锁相的基于相位放大器的再生器

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摘要

We propose a scheme for phase regeneration of optical binary phase-shift keying (BPSK) data signals based on phase sensitive amplification without active phase locking. A delay interferometer is used to convert a BPSK signal impaired by noise to an amplitude modulated signal followed by cross-phase modulation in a highly nonlinear fiber (HNLF), which transfers the data modulation from the amplitude modulated signal to the phase of a locally generated carrier. By placing the HNLF in a loop, a stable phase relation is maintained relative to a set of counter propagating locally generated phase-locked pumps. As a result, active phase stabilization is avoided. A proof-of-principle experiment is carried out with a dual-pump degenerate phase sensitive amplifier, demonstrating regeneration for a 10-Gb/s non-return-to-zero differential BPSK data signal degraded by a sinusoidal phase-noise tone. Receiver sensitivity improvements of 3.5 dB are achieved at a bit error rate of 10. In addition, numerical simulations are performed comparing the idealized regenerator performance in the presence of sinusoidal phase modulation as well as Gaussian phase noise.
机译:我们提出了一种基于光敏相移键控(BPSK)数据信号的相位再生方案,该方案基于没有有源锁相的相敏放大。延迟干涉仪用于将受到噪声影响的BPSK信号转换为调幅信号,然后在高度非线性光纤(HNLF)中进行交叉相位调制,从而将数据调制从调幅信号传输到本地产生的相位载体。通过将HNLF放置在一个回路中,相对于一组反向传播的本地产生的锁相泵,可以保持稳定的相位关系。结果,避免了有源相位稳定。用双泵简并相位敏感放大器进行了原理验证实验,展示了对正弦相位噪声降低了的10 Gb / s非归零差分BPSK数据信号的再生。误码率为10时,接收器灵敏度提高了3.5 dB。此外,在存在正弦波相位调制和高斯相位噪声的情况下,进行了数值模拟,比较了理想的再生器性能。

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