基于光学微梳的微波光子光谱滤波器性能分析

Yang Li, Yang Sun, Jiayang Wu, Guanghui Ren, Xingyuan Xu, Bill Corcoran, Sai Tak Chu, Brent E. Little, Roberto Morandotti, Arnan Mitchell, David J. Moss
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引用次数: 0

摘要

微波横向滤波器是基于数字信号处理中的横向滤波器结构实现的,它具有很高的可重构性,可以在不改变硬件的情况下实现多种信号处理功能。当使用微波光子(MWP)技术(也称为MWP横向滤波器)实现时,它们提供了与电子对偶物相比的竞争优势,例如大的操作带宽,对电磁干扰的强抗扰性,以及在高频处理信号时的低损耗。高性能光学微梳的最新进展为需要更多波长通道才能实现高性能的MWP横向滤波器提供了紧凑而强大的多波长源,从而可以展示具有改进性能和新功能的各种滤波器功能。本文对基于横向滤波方法的微梳MWP频谱滤波器进行了综合性能分析。首先,研究了有限抽头数引起的滤波器光谱响应的理论局限性。其次,分析了实验误差源对滤波器光谱响应的影响。最后,分析了输入信号带宽对滤波误差的影响。这些结果为各种应用中基于微梳的MWP横向滤波器的设计和优化提供了有价值的指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Performance Analysis of Microwave Photonic Spectral Filters based on Optical Microcombs

Performance Analysis of Microwave Photonic Spectral Filters based on Optical Microcombs

Microwave transversal filters, which are implemented based on the transversal filter structure in digital signal processing, offer a high reconfigurability for achieving a variety of signal processing functions without changing hardware. When implemented using microwave photonic (MWP) technologies, also known as MWP transversal filters, they provide competitive advantages over their electrical counterparts, such as large operation bandwidth, strong immunity to electromagnetic interference, and low loss when processing signals at high frequencies. Recent advances in high-performance optical microcombs provide compact and powerful multi-wavelength sources for MWP transversal filters that require a larger number of wavelength channels to achieve high performance, allowing for the demonstration of a diverse range of filter functions with improved performance and new features. Here, a comprehensive performance analysis for microcomb-based MWP spectral filters based on the transversal filter approach is presented. First, the theoretical limitations are investigated in the filter spectral response induced by finite tap numbers. Next, the distortions are analyzed in the filter spectral response resulting from experimental error sources. Finally, the influence of input signal's bandwidth on the filtering errors is assessed. These results provide a valuable guide for the design and optimization of microcomb-based MWP transversal filters for a variety of applications.

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