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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >Coherence-Free Equivalent Negative Tap Microwave Photonic Notch Filter Based on Delayed Self-Wavelength Conversion
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Coherence-Free Equivalent Negative Tap Microwave Photonic Notch Filter Based on Delayed Self-Wavelength Conversion

机译:基于延迟自波长转换的无相干等效负抽头微波光子陷波滤波器

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摘要

A new coherence-free single-wavelength microwave photonic notch filter, which is widely tuneable, and which is compatible to be inserted in a conventional fiber-optic link, is presented. It is based on self-wavelength cross gain modulation in a semiconductor optical amplifier placed at an off-centre location in a Sagnac loop. The structure can realize a high free spectral-range negative tap notch filter response, and does not have any coherent interference and phase-noise limitations. Moreover, it enables widely tunable notch filtering to be simply realized. Experimental results are presented which demonstrate a large continuous filter tuning range of an octave, robust operation with a narrow linewidth source, and wide passband notch filtering operations.
机译:提出了一种新型的无相干单波长微波光子陷波滤波器,该滤波器可广泛调谐并兼容插入传统的光纤链路中。它基于位于Sagnac环路偏心位置的半导体光放大器中的自波长交叉增益调制。该结构可以实现高自由光谱范围的负抽头陷波滤波器响应,并且没有任何相干干扰和相位噪声限制。而且,它使得可以简单地实现广泛可调的陷波滤波。给出了实验结果,这些结果证明了倍频程的大连续滤波器调整范围,具有窄线宽源的稳健操作以及宽通带陷波滤波操作。

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