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Investigation of wavelength conversion by four-wave mixing in semiconductor optical amplifiers.

机译:研究半导体光放大器中四波混频的波长转换。

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摘要

Four-wave mixing (FWM) in semiconductor optical amplifiers (SOAs) is investigated for wavelength conversion in high-speed, all-optical networks. The design of the wavelength converter is optimized and the system performance limitations imposed by the fundamental physical principles involved in the SOA FWM process are characterized.; Single channel conversion performance is evaluated. The FWM efficiency ultimately determines many systems-level characteristics of the wavelength converter. The spectral range of our wavelength converter is characterized. Wide wavelength conversions of up to 18 nm and complete coverage of a 10 nm spectral range are demonstrated, while maintaining a BER performance of better than 10{dollar}sp{lcub}-9{rcub}{dollar} at 10 Gb/s. The converter also demonstrates a large dynamic input range of over 10 dB at 2.5 Gb/s. And the first characterization of cascaded FWM SOA wavelength converters, cascading conversion of up to 10 nm at 10 Gb/s, is performed.; With a simple modification of the converter design to a dual-pump configuration, the wavelength converter is able to provide nearly polarization insensitive performance. The converted signal's magnitude varies by less than 1.5 dB and its sensitivity varies by less than 2 dB for 2.5 Gb/s signals over the entire range of input polarizations.; Time resolved spectral analysis is performed to evaluate the spectral properties of the wavelength converter. A pattern-dependent additional chirp is measured on the signal, primarily resulting from fluctuations in the gain saturation of the SOA. This degradation to the optical phase conjugation, intrinsic to the SOA FWM process, is minimal enough to allow dispersion compensation by mid-span spectral inversion. Error-free detection of a directly modulated 10 Gb/s signal is achieved over 120 km.; Additional demonstrations are also presented. Multi-channel wavelength conversion and dynamic routing are successfully performed. Finally, some work on a microcavity erbium-doped fiber laser, initially designed and developed for use as a tunable source for wavelength-division multiplexed networks, is presented.
机译:研究了半导体光放大器(SOA)中的四波混频(FWM)用于高速全光网络中的波长转换。优化了波长转换器的设计,并描述了SOA FWM过程涉及的基本物理原理对系统性能的限制。评估单通道转换性能。 FWM的效率最终决定了波长转换器的许多系统级特性。我们的波长转换器的光谱范围具有特征。演示了高达18 nm的宽波长转换和10 nm光谱范围的完整覆盖范围,同时在10 Gb / s的速率下保持了优于10 {dollar} sp {lcub} -9 {rcub} {dollar}的BER性能。该转换器还展示了2.5 Gb / s时超过10 dB的大动态输入范围。并进行了级联FWM SOA波长转换器的第一个表征,即在10 Gb / s时级联转换高达10 nm。通过将转换器设计简单修改为双泵配置,波长转换器能够提供几乎不偏振的性能。在整个输入极化范围内,对于2.5 Gb / s信号,转换后的信号幅度变化小于1.5 dB,灵敏度变化小于2 dB。执行时间分辨光谱分析以评估波长转换器的光谱特性。在信号上测量与模式相关的附加线性调频,主要是由于SOA增益饱和的波动所致。 SOA FWM过程固有的对光相位共轭的这种退化最小,足以允许通过中跨频谱反转进行色散补偿。在120 km范围内实现了对直接调制的10 Gb / s信号的无错误检测。还提供了其他示范。多通道波长转换和动态路由已成功执行。最后,介绍了微腔掺-光纤激光器的一些工作,该激光器最初设计和开发用作波分复用网络的可调光源。

著录项

  • 作者

    Geraghty, David Francis.;

  • 作者单位

    California Institute of Technology.;

  • 授予单位 California Institute of Technology.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 1997
  • 页码 104 p.
  • 总页数 104
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

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