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Tunable photonic filters: a digital signal processing design approach

机译:可调光子滤波器:数字信号处理设计方法

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摘要

Digital signal processing techniques are used for synthesizing tunable optical filters with variable bandwidth and centered reference frequency including the tunability of the low-pass, high-pass, bandpass, and bandstop optical filters. Potential applications of such filters are discussed, and the design techniques and properties of recursive digital filters are outlined. The basic filter structures, namely, the first-order all-pole optical filter (FOAPOF) and the first-order all-zero optical filter (FOAZOF), are described, and finally the design process of tunable optical filters and the designs of the second-order Butterworth low-pass, high-pass, bandpass, and bandstop tunable optical filters are presented. Indeed, we identify that the all-zero and all-pole networks are equivalent with well known principles of optics of interference and resonance, respectively. It is thus very straightforward to implement tunable optical filters, which is a unique feature.
机译:数字信号处理技术用于合成具有可变带宽和居中参考频率的可调光学滤波器,包括低通,高通,带通和带阻光学滤波器的可调性。讨论了这种滤波器的潜在应用,并概述了递归数字滤波器的设计技术和特性。描述了基本的滤光器结构,即一阶全极点滤光器(FOAPOF)和一阶全零滤光器(FOAZOF),最后介绍了可调谐滤光器的设计过程及其设计。提出了二阶巴特沃斯低通,高通,带通和带阻可调光学滤波器。实际上,我们确定全零网络和全极点网络分别等效于干涉和共振光学的众所周知的原理。因此,实现可调光滤波器非常简单,这是一个独特的功能。

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  • 来源
    《Applied optics》 |2009年第15期|共12页
  • 作者

    Le Nguyen Binh;

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  • 正文语种 eng
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