Comb-Based Radio-Frequency Photonic Filters with Rapid Tunability and High Selectivity
Abstract
Photonic technologies have received considerable attention for enhancement of radio-frequency (RF) electrical systems, including high-frequency analog signal transmission, control of phased arrays, analog-to-digital conversion, and signal processing. Although the potential of radio-frequency photonics for implementation of tunable electrical filters over broad RF bandwidths has been much discussed, realization of programmable filters with highly selective filter lineshapes and rapid reconfigurability has faced significant challenges. A new approach for RF photonic filters based on frequency combs offers a potential route to simultaneous high stopband attenuation, fast tunability, and bandwidth reconfiguration. In one configuration tuning of the RF passband frequency is demonstrated with unprecedented (~40 ns) speed by controlling the optical delay between combs. In a second, fixed filter configuration, cascaded four-wave mixing simultaneously broadens and smoothes comb spectra, resulting in Gaussian RF filter lineshapes exhibiting extremely high (>60 dB) main lobe to sidelobe suppression ratio and (>70 dB) stopband attenuation.
Keywords
Cite
@article{arxiv.1105.0722,
title = {Comb-Based Radio-Frequency Photonic Filters with Rapid Tunability and High Selectivity},
author = {V. R. Supradeepa and Christopher M. Long and Rui Wu and Fahmida Ferdous and Ehsan Hamidi and Daniel E. Leaird and Andrew M. Weiner},
journal= {arXiv preprint arXiv:1105.0722},
year = {2012}
}
Comments
Updated the submission with the most recent version of the paper