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Dispersive Fourier Transformation for Versatile Microwave Photonics Applications

机译:色散傅里叶变换在多功能微波光子学中的应用

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Dispersive Fourier transformation (DFT) maps the broadband spectrum of an ultrashort optical pulse into a time stretched waveform with its intensity profile mirroring the spectrum using chromatic dispersion. Owing to its capability of continuous pulse-by-pulse spectroscopic measurement and manipulation, DFT has become an emerging technique for ultrafast signal generation and processing, and high-throughput real-time measurements, where the speed of traditional optical instruments falls short. In this paper, the principle and implementation methods of DFT are first introduced and the recent development in employing DFT technique for widespread microwave photonics applications are presented, with emphasis on real-time spectroscopy, microwave arbitrary waveform generation, and microwave spectrum sensing. Finally, possible future research directions for DFT-based microwave photonics techniques are discussed as well.
机译:色散傅里叶变换(DFT)将超短光脉冲的宽带光谱映射为时间拉伸波形,其强度分布图使用色散将光谱镜像。由于具有连续的逐脉冲光谱测量和处理能力,DFT已成为新兴的技术,可用于超快信号的生成和处理以及高通量实时测量,而传统光学仪器的速度却不高。本文首先介绍了DFT的原理和实现方法,并介绍了DFT技术在广泛的微波光子学应用中的最新发展,重点是实时光谱,微波任意波形生成和微波频谱感测。最后,还讨论了基于DFT的微波光子技术的未来可能的研究方向。

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