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Regeneration of DQPSK signals using semiconductor optical amplifier-based phase regenerator

机译:使用基于半导体光放大器的相位再生器再生DQPSK信号

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摘要

Amplification and simultaneous phase regeneration are considerably necessary for multi-level phase modulation format transmission system. In this paper, a phase regenerator for phase-noise degraded differential-quadrature-phase-shift-keying (DQPSK) signals is proposed by using semiconductor optical amplifier (SOA) as nonlinear medium with structure of nonlinear Mach-Zehnder interferometers (MZI). The formula of optical field distribution after input signals passing through phase regenerator is theoretically educed. For different input power of signal, the influence of signal-pump phase difference on signal power gain is studied. Furthermore, the optimal parameters of phase regenerator and relative phase of signal and pump are obtained. In this paper, we present the physical mechanism, which allowed us to design and optimize the phase regenerator, and compare the modeling and experimental results. In addition, the distributions of phase and intensity for both the non-regenerated and regenerated signals are simulated. The results demonstrate that nearly ideal phase regeneration can be achieved for the phase-noise degraded DQPSK signals using our SOA-based regenerator.
机译:对于多级相位调制格式传输系统,放大和同时相位再生是非常必要的。本文以半导体光放大器(SOA)为非线性介质,采用非线性马赫曾德尔干涉仪(MZI)的结构,提出了一种用于相位噪声退化的差分正交相移键控(DQPSK)信号的相位再生器。理论推导了输入信号经过相位再生器后的光场分布公式。对于不同的信号输入功率,研究了信号泵相位差对信号功率增益的影响。此外,获得了相位再生器的最佳参数以及信号和泵浦的相对相位。在本文中,我们介绍了物理机制,使我们可以设计和优化相再生器,并比较建模和实验结果。此外,还模拟了非再生信号和再生信号的相位和强度分布。结果表明,使用我们基于SOA的再生器,对于降噪后的DQPSK信号,可以实现近乎理想的相位再生。

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