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Microwave photonic filter with multiple independently tunable passbands based on a broadband optical source
Author(s) -
Long Huang,
Dalei Chen,
Fangzheng Zhang,
Xiang Peng,
Tingting Zhang,
Peng Wang,
Linlin Lu,
Tao Pu,
Xiangfei Chen
Publication year - 2015
Publication title -
optics express
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.394
H-Index - 271
ISSN - 1094-4087
DOI - 10.1364/oe.23.025539
Subject(s) - passband , broadband , optics , true time delay , optical filter , group delay and phase delay , bandwidth (computing) , physics , dispersion (optics) , microwave , signal (programming language) , band pass filter , telecommunications , computer science , phased array , quantum mechanics , antenna (radio) , programming language
In this paper, a novel microwave photonic filter (MPF) with multiple independently tunable passbands is proposed. A broadband optical source (BOS) is employed and split by a 1:N coupler into several branches. One branch is directed to a phase modulator which is modulated by a radio frequency signal and the other branches are delayed by optical delay lines (ODLs), respectively. All of these branches are combined by another 1:N coupler and sent to a dispersion compensation fiber which is used to introduce group delay dispersion to the optical signal. At a photodetector, each time-delayed broadband lightwave beating with the sidebands produced by the phase modulator forms a passband of the MPF. By tuning the delay of each broadband lightwave, the center frequency of the passband can be independently tuned. An MPF with two independently tunable passbands is experimentally demonstrated. The two passbands can be tuned from DC to 30 GHz with a 3-dB bandwidth of about 250 MHz. The stability and dynamic range of the MPF are also evaluated. By employing more branches delayed by ODLs, more passbands can be generated.

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