单波长微波光子横向滤波器的可调谐多模光延迟线

Xiaojuan Liu, Chaitanya K. Mididoddi, Zhongwei Tan, Guoqing Wang, Liyang Shao, Chao Wang
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引用次数: 2

摘要

现有的微波光子横向滤光器大多是在非相干状态下使用多个光载波波长实现的,以避免光干涉。系统因此变得复杂和昂贵。在这项工作中,我们提出了一种新的单波长微波光子横向滤波器的设计,在相干区使用单个多模光纤。滤波抽头是由多个不同入射角的窄光束激发的空间模式产生的。因此,由于空间解复用,消除了光干扰。由于模态色散较大,滤波器抽头之间的时间延迟可以简单地使用空间槽进行调整。在一个概念验证实验中,一个模态色散使光延迟线模块用于双分导微波光子横向滤波器已被证明避免了光干扰。
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Tunable Multimode Optical Delay Line for Single-Wavelength Microwave Photonic Transversal Filter
Most existing microwave photonic transversal filters are implemented in the incoherent regime using multiple optical carrier wavelengths to avoid optical interference. The system therefore becomes complicated and expensive. In this work, we present a novel single-wavelength microwave photonics transversal filter design in the coherent regime using a single multimode fibre. Filter taps are generated from spatial modes excited by multiple narrow optical beams with different incident angles. Therefore, optical interference is eliminated due to space demultiplexing. Time delays between filter taps are obtained due to large modal dispersion and can be simply tuned using spatial slots. In a proof-of-concept experiment, a modal dispersion enabled optical delay line module for a two-tap microwave photonic transversal filter has been demonstrated with avoided optical interference.
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