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首页> 外文期刊>Optics Letters >Ultrahigh-Q microwave photonic filter with tunable Q value utilizing cascaded optical-electrical feedback loops
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Ultrahigh-Q microwave photonic filter with tunable Q value utilizing cascaded optical-electrical feedback loops

机译:利用级联的光电反馈回路实现Q值可调的超高Q微波光子滤波器

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摘要

A microwave photonic filter with the highest reported quality factor (Q) value of 4895.31 is proposed and experimentally demonstrated by using two cascaded infinite impulse response (IIR) filters. Each IIR filter comprises both optical and electronic signals in a feedback loop and thus the loop length can be reduced without the need to consider the light coherence length. The Vernier effect enables a significant improvement of the free spectral ranges and Q values of the cascaded filter. The Q value of the proposed microwave photonic filter can be changed when the loop lengths of two cascaded filters are carefully adjusted. In addition, for a fixed Q, the frequency response of the filter can also be tuned by adjusting the bias of the Mach-Zehnder modulator in each loop.
机译:提出了一种微波光子滤波器,其报告的最高品质因数(Q)值为4895.31,并通过使用两个级联的无限脉冲响应(IIR)滤波器进行了实验证明。每个IIR滤波器在一个反馈环路中包括光信号和电信号,因此无需考虑光相干长度就可以减小环路长度。游标效应可显着改善级联滤波器的自由光谱范围和Q值。当仔细调整两个级联滤波器的环路长度时,可以更改所提出的微波光子滤波器的Q值。此外,对于固定的Q,还可以通过调整每个环路中的Mach-Zehnder调制器的偏置来调整滤波器的频率响应。

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