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Optimized Quantum–Well Semiconductor Optical Amplifier for RZ-DPSK Signal Regeneration

机译:用于RZ-DPSK信号再生的优化量子阱半导体光放大器

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摘要

In this paper, we present an optimized quantum-well (QW)-semiconductor optical amplifier (SOA) which is capable of regenerating phase-modulated signals, such as return-to-zero differential-phase-shift keying (RZ-DPSK) signal. Based on the optimized QW SOA, the amplitude fluctuations are suppressed while the phase information is preserved. The essential mechanism of the optimized QW SOA is the low linewidth enhancement factor (α-factor), which can be obtained by means of structural optimization. Based on the numerical model, the power fluctuations can be suppressed from 4.26 mW (33% of input peak power) to 1.59 mW (13% of output peak power) at 40 Gb/s. The average phase noise induced by SOA is as small as 50. Furthermore, the DPSK signal regeneration scheme based on a single QW SOA is quite simple and stable.
机译:在本文中,我们提出了一种优化的量子阱(QW)半导体光放大器(SOA),该放大器能够再生调相信号,例如归零差分相移键控(RZ-DPSK)信号。基于优化的QW SOA,可以在保持相位信息的同时抑制幅度波动。优化的QW SOA的基本机制是低线宽增强因子(α因子),可以通过结构优化来获得。基于数值模型,在40 Gb / s时,功率波动可以从4.26 mW(输入峰值功率的33%)抑制到1.59 mW(输出峰值功率的13%)。 SOA引起的平均相位噪声小至5 0 。此外,基于单个QW SOA的DPSK信号再生方案非常简单且稳定。

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