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Impact of dispersion, PMD, and PDL on the performance of spectrum-sliced incoherent light sources using gain-saturated semiconductor optical amplifiers

机译:色散,PMD和PDL对使用增益饱和半导体光放大器的光谱切片非相干光源性能的影响

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The effects of chromatic dispersion (CD), polarization-mode dispersion (PMD), and polarization-dependent loss (PDL) on the intensity noise suppression of spectrum-sliced incoherent light sources achieved by using gain-saturated (GS) semiconductor optical amplifiers (SOAs) are investigated. Passing the spectrum-sliced incoherent light through SOAs, the excess intensity noise (EIN) originating from beating of spontaneous emission against itself can be greatly reduced. However, since the noise suppression is achieved by an elaborate balancing between numerous frequency/polarization components of light, thus, forming a high correlation between them, it is vulnerable to frequency/polarization-dependent optical phenomena. Through Q-factor and bit error rate (BER) measurements, this paper shows that CD, PMD, or PDL deteriorates the SOA-based noise suppression technique by breaking the correlation. Spectral analysis is also performed to investigate the frequency dependency of these effects. It is shown that CD and PMD negate the noise suppression giving rise to intensity noise from high frequencies, whereas there is no frequency dependence for PDL effects. Therefore, CD-, PMD-, or PDL-induced penalties for incoherent light sources using the SOA-based noise suppression technique are considerably greater than those produced by pulse broadening or distortion alone.
机译:色散(CD),偏振模色散(PMD)和偏振相关损耗(PDL)对通过使用增益饱和(GS)半导体光放大器实现的光谱切片非相干光源的强度噪声抑制的影响( SOA)。通过SOA的光谱切分的非相干光,可以大大减少源于自发的自发跳动产生的多余强度噪声(EIN)。但是,由于噪声的抑制是通过光的多个频率/偏振分量之间的精心平衡来实现的,因此,在它们之间形成高度相关性,因此它容易受到频率/偏振相关的光学现象的影响。通过Q因子和误码率(BER)的测量,本文表明CD,PMD或PDL通过破坏相关性而恶化了基于SOA的噪声抑制技术。还执行频谱分析以研究这些效应的频率依赖性。结果表明,CD和PMD抵消了噪声抑制,从而导致了来自高频的强度噪声,而PDL效应与频率无关。因此,使用基于SOA的噪声抑制技术的CD,PMD或PDL引起的对非相干光源的惩罚要远远大于仅由脉冲展宽或失真引起的惩罚。

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