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All-Optical Clock Recovery, Photonic Balancing, and Saturated Asymmetric Filtering For Fiber Optic Communication Systems

机译:光纤通信系统的全光时钟恢复,光子平衡和饱和不对称滤波

摘要

In this dissertation I investigated a multi-channel and multi-bit rate all-optical clock recovery device. This device, a birefringent Fabry-Perot resonator, had previously been demonstrated to simultaneously recover the clock signal from 10 wavelength channels operating at 10 Gb/s and one channel at 40 Gb/s. Similar to clock signals recovered from a conventional Fabry-Perot resonator, the clock signal from the birefringent resonator suffers from a bit pattern effect. I investigated this bit pattern effect for birefringent resonators numerically and experimentally and found that the bit pattern effect is less prominent than for clock signals from a conventional Fabry-Perot resonator.I also demonstrated photonic balancing which is an all-optical alternative to electrical balanced detection for phase shift keyed signals. An RZ-DPSK data signal was demodulated using a delay interferometer. The two logically opposite outputs from the delay interferometer then counter-propagated in a saturated SOA. This process created a differential signal which used all the signal power present in two consecutive symbols. I showed that this scheme could provide an optical alternative to electrical balanced detection by reducing the required OSNR by 3 dB.I also show how this method can provide amplitude regeneration to a signal after modulation format conversion. In this case an RZ-DPSK signal was converted to an amplitude modulation signal by the delay interferometer. The resulting amplitude modulated signal is degraded by both the amplitude noise and the phase noise of the original signal. The two logically opposite outputs from the delay interferometer again counter-propagated in a saturated SOA. Through limiting amplification and noise modulation this scheme provided amplitude regeneration and improved the Q-factor of the demodulated signal by 3.5 dB.Finally I investigated how SPM provided by the SOA can provide a method to reduce the in-band noise of a communication signal. The marks, which represented data, experienced a spectral shift due to SPM while the spaces, which consisted of noise, did not. A bandpass filter placed after the SOA then selected the signal and filtered out what was originally in-band noise. The receiver sensitivity was improved by 3 dB.
机译:本文研究了一种多通道,多比特率的全光时钟恢复设备。该设备是双折射Fabry-Perot谐振器,先前已被证明可以同时从10个波长为10 Gb / s的波长信道和一个40 Gb / s的信道恢复时钟信号。与从常规法布里-珀罗谐振器恢复的时钟信号相似,来自双折射谐振器的时钟信号遭受位图效应。我通过数值和实验研究了这种双折射谐振器的位模式效应,发现该位模式效应不如来自传统Fabry-Perot谐振器的时钟信号显着。我还演示了光子平衡,它是电平衡检测的全光学替代方案用于相移键控信号。使用延迟干涉仪对RZ-DPSK数据信号进行了解调。延迟干涉仪的两个逻辑相反的输出随后在饱和SOA中反向传播。此过程产生了一个差分信号,该信号使用了两个连续符号中存在的所有信号功率。我展示了该方案可以通过将所需的OSNR降低3 dB来为电平衡检测提供一种光学替代方案。我还展示了该方法如何在调制格式转换后为信号提供幅度再生。在这种情况下,延迟干涉仪将RZ-DPSK信号转换为幅度调制信号。原始信号的幅度噪声和相位噪声都会降低所得的幅度调制信号。延迟干涉仪的两个逻辑相反的输出再次在饱和SOA中反向传播。通过限制放大和噪声调制,该方案提供了幅度再生,并将解调信号的Q因子提高了3.5 dB。最后,我研究了SOA提供的SPM如何提供一种降低通信信号带内噪声的方法。代表数据的标记由于SPM而经历了光谱偏移,而由噪声组成的空间则没有。然后,在SOA之后放置一个带通滤波器,以选择信号并滤除最初的带内噪声。接收器灵敏度提高了3 dB。

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  • 作者

    Parsons Earl Ryan;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 en
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