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All-optical microwave notch filter with flat passband based on semiconductor optical amplifier

机译:基于半导体光放大器的平坦通带全光微波陷波滤波器

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摘要

An all-optical filter structure for interference mitigation of microwave signals is proposed and demonstrated. The structure is based on a recirculating delay line loop (RDLL) and a fiber Bragg grating. The RDLL is comprised of a semiconductor optical amplifier (SOA) followed by a tunable narrowband optical filter and an optical variable delay line. Negative tap is generated using wavelength conversion based on the cross-gain modulation of amplified spontaneous emission spectrum of the SOA. A negative band-pass filter and a broadband all-pass filter are synthesized to achieve a narrow notch filter with flat passband which can excise interference with minimal impact on the wanted signal over a wide microwave range. Experimental results show the notch rejection ratio of 30 dB, good shape factor and tunability.
机译:提出并证明了一种用于减轻微波信号干扰的全光学滤波器结构。该结构基于循环延迟线环路(RDLL)和光纤布拉格光栅。 RDLL由半导体光放大器(SOA),可调谐的窄带光学滤波器和可变光延迟线组成。负抽头是基于SOA的放大自发发射光谱的交叉增益调制使用波长转换生成的。合成了负带通滤波器和宽带全通滤波器,以实现具有平坦通带的窄陷波滤波器,该滤波器可以消除干扰,并且在很宽的微波范围内对所需信号的影响最小。实验结果表明,陷波抑制比为30 dB,具有良好的形状系数和可调性。

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