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All-optical regenerator of multi-channel signals

机译:多通道信号全光再生器

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摘要

One of the main reasons why nonlinear-optical signal processing (regeneration, logic, etc.) has not yet become a practical alternative to electronic processing is that the all-optical elements with nonlinear input–output relationship have remained inherently single-channel devices (just like their electronic counterparts) and, hence, cannot fully utilise the parallel processing potential of optical fibres and amplifiers. The nonlinear input–output transfer function requires strong optical nonlinearity, e.g. self-phase modulation, which, for fundamental reasons, is always accompanied by cross-phase modulation and four-wave mixing. In processing multiple wavelength-division-multiplexing channels, large cross-phase modulation and four-wave mixing crosstalks among the channels destroy signal quality. Here we describe a solution to this problem: an optical signal processor employing a group-delay-managed nonlinear medium where strong self-phase modulation is achieved without such nonlinear crosstalk. We demonstrate, for the first time to our knowledge, simultaneous all-optical regeneration of up to 16 wavelength-division-multiplexing channels by one device. This multi-channel concept can be extended to other nonlinear-optical processing schemes.
机译:非线性光学信号处理(再生,逻辑等)尚未成为电子处理的实用替代方案的主要原因之一是,具有非线性输入-输出关系的全光学元件本质上仍然是单通道设备(就像电子产品一样),因此无法充分利用光纤和放大器的并行处理潜力。非线性输入输出传递函数需要很强的光学非线性,例如自相位调制,由于根本原因,总是伴随着交叉相位调制和四波混频。在处理多个波分复用信道时,信道之间较大的交叉相位调制和四波混合串扰会破坏信号质量。在这里,我们描述了此问题的解决方案:一种采用组延迟管理的非线性介质的光信号处理器,其中实现了强自相位调制,而没有这种非线性串扰。我们首次了解到,一个设备可以同时进行多达16个波分复用通道的全光同时再生。该多通道概念可以扩展到其他非线性光学处理方案。

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