光学滤波器
带通滤波器
滤波器(信号处理)
微波食品加热
电子工程
光子学
干扰(通信)
材料科学
测距
光电子学
光学
电磁干扰
分布元件滤波器
原型滤波器
波导滤波器
计算机科学
雷达
电子过滤器
信号处理
频率响应
滤波器设计
m-导出滤波器
激光器
工程类
有源滤波器
声学
作者
Yang Li,Yang Sun,jiayang Wu,Chawaphon Prayoonyong,Caitlin E. Murray,Guanghui Ren,Thạch Giang Nguyễn,Xingyuan Xu,Bill Corcoran,Sai Tak Chu,B. E. Little,Roberto Morandotti,Arnan Mitchell,D. J. Moss
标识
DOI:10.1002/lpor.202501910
摘要
ABSTRACT Microwave photonic (MWP) filters are essential components in microwave systems due to their wide bandwidth, low loss, and immunity to electromagnetic interference. Steep roll‐off is critical for precise spectral shaping and effective interference suppression, yet conventional MWP filters face challenges in simultaneously achieving steep transitions and high reconfigurability. Here, reconfigurable MWP filters with steep roll‐off based on a transversal filter structure using an optical microcomb source are demonstrated. Four different types of single‐band MWP filters with ultrahigh roll‐off rates up to ∼32.6 dB/GHz and a minimum 20‐dB shape factor of ∼1.15 are achieved. In addition, simply through programming tap coefficients, band‐pass filters with tunable centre frequencies ranging from 5 to 15 GHz and dual‐band MWP filters with various filter responses are demonstrated without changing any hardware, where steep roll‐off is also validated. The reconfigurable MWP filters with steep roll‐off offer a stable and versatile solution for applications requiring high spectral selectivity, such as next‐generation wireless networks, high‐resolution radar imaging, and advanced biomedical sensing.
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