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Time Lens based Optical Fourier Transformation for All-Optical Signal Processing of Spectrally-Efficient Data

机译:基于时间镜头的光学傅里叶变换用于光谱高效数据的全光信号处理

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摘要

We review recent progress in the use of time lens based optical Fourier transformation for advanced all-optical signal processing. A novel time lens based complete optical Fourier transformation (OFT) technique is introduced. This complete OFT is based on two quadratic phase-modulation stages using four-wave mixing (FWM), separated by a dispersive medium, which enables time-to-frequency and frequency-to-time conversions simultaneously, thus performing an exchange between the temporal and spectral profiles of the input signal. Using the proposed complete OFT, several advanced all-optical signal processing schemes for spectrally-efficient systems and networks have been achieved, including all-optical generation, detection and format conversion of spectrally-efficient signals. The spectrally-efficient signals in this paper mainly refer to efficiently multiplexed signals with a high symbol rate per Hz, such as orthogonal frequency division multiplexing (OFDM), Nyquist wavelength-division multiplexing (Nyquist-WDM) and Nyquist optical time division multiplexing (Nyquist-OTDM) signals.
机译:我们回顾了基于时间透镜的光学傅里叶变换在先进的全光信号处理中的最新进展。介绍了一种基于新型时间透镜的完整光学傅里叶变换(OFT)技术。完整的OFT基于使用四波混频(FWM)的两个二次相位调制阶段,并由分散介质分隔开,从而可以同时进行时间到频率和频率到时间的转换,从而在时间上进行交换和输入信号的频谱图。使用提出的完整的OFT,已经实现了针对光谱效率高的系统和网络的几种先进的全光信号处理方案,包括光谱效率高的信号的全光产生,检测和格式转换。本文中的频谱有效信号主要是指每赫兹具有高符号率的有效复用信号,例如正交频分复用(OFDM),奈奎斯特波分复用(Nyquist-WDM)和奈奎斯特光时分复用(Nyquist -OTDM)信号。

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