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General IIR optical notch filter based on Michelson Gires-Tournois interferometer

机译:基于Michelson Gires-Tournois干涉仪的通用IIR光学陷波滤波器

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摘要

A general IIR optical notch filter design is presented from a digital filter design perspective for Michelson Gires-Tournois Interferometer structure. Optical notch filter with arbitrary notch frequency, notch point number, and 3 dB rejection bandwidth can be designed easily. According to the spectral requirement of desired notch filter, in frequency domain we firstly calculate the transfer function of desired allpass filter. Then the numbers of reflectors in Gires-Tournois etalon can be determined. We calculate the transfer function of this multi-cavity Gires-Tournois etalon by using Z-transform. By making the transfer function of all-pass filter in frequency domain equal to that of the multi-cavity Gires-Tournois etalon, the notch filter can be directly realized. Different design examples are given in detail in the paper. The change of output spectrum is also investigated for the reflectance of the reflectors and the distance between the reflectors deviating from the ideal value. The results show that the notch filter has the tunability of notch frequency and 3 dB rejection bandwidth. The chromatic dispersion characteristic of the notch filter is analyzed finally. It shows that the notch filter has excellent chromatic dispersion characteristic.
机译:从数字滤波器设计的角度出发,针对迈克尔逊·吉雷斯-图尔努瓦干涉仪结构,提出了一种通用的IIR光学陷波滤波器设计。可以容易地设计具有任意陷波频率,陷波点数和3 dB抑制带宽的光学陷波滤波器。根据所需陷波滤波器的频谱要求,首先在频域中计算所需全通滤波器的传递函数。然后可以确定Gires-Tournois标准具中的反射镜数量。我们通过使用Z变换来计算此多腔Gires-Tournois标准具的传递函数。通过使频域上的全通滤波器的传递函数等于多腔Gires-Tournois标准具的传递函数,可以直接实现陷波滤波器。本文详细给出了不同的设计示例。还研究了输出光谱的变化,以了解反射镜的反射率以及反射镜之间的距离是否偏离理想值。结果表明,陷波滤波器具有陷波频率和3 dB抑制带宽的可调性。最后分析陷波滤波器的色散特性。这表明陷波滤波器具有优异的色散特性。

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