4.6 Article

Microwave photonic integrator based on a multichannel fiber Bragg grating

Journal

OPTICS LETTERS
Volume 41, Issue 2, Pages 273-276

Publisher

OPTICAL SOC AMER
DOI: 10.1364/OL.41.000273

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Funding

  1. Natural Sciences and Engineering Research Council of Canada (NSERC)
  2. China Scholarship Council [201206160086]

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We propose and experimentally demonstrate a microwave photonic integrator based on a multichannel fiber Bragg grating (FBG) working in conjunction with a dispersion compensating fiber (DCF) to provide a step group delay response with no in-channel dispersion-related distortion. The multichannel FBG is designed based on the spectral Talbot effect, which provides a large group delay dispersion (GDD) within each channel. A step group delay response can then be achieved by cascading the multichannel FBG with a DCF having a GDD opposite the in-channel GDD. An optical comb, with each comb line located at the center of each channel of the FBG, is modulated by a microwave signal to be integrated. At the output of the DCF, multiple time-delayed replicas of the optical signal, with equal time delay spacing are obtained and are detected and summed at a photodetector (PD). The entire operation is equivalent to the integration of the input microwave signal. For a multichannel FBG with an in-channel GDD of 730 ps/nm and a DCF with an opposite GDD, an integrator with a bandwidth of 2.9 GHz and an integration time of 7 ns is demonstrated. (C) 2016 Optical Society of America

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