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Sparse signal reconstruction based on experimental chaos generated by a laser diode
Conference paper

Sparse signal reconstruction based on experimental chaos generated by a laser diode

D. Rontani, D. Choi, C.-Y. Chang, A. Locquet and D.S. Citrin
Proceedings of SPIE - The International Society for Optical Engineering, Vol.9892, 98920H
2016

Abstract

Information Processing nonlinear dynamics Optical chaos semiconductor lasers time-delay systems Electronic Optical and Magnetic Materials Condensed Matter Physics Computer Science Applications Applied Mathematics Electrical and Electronic Engineering
We demonstrate experimentally that optical chaos generated by a laser diode with optical feedback is suitable for compressive sensing of sparse signals. Specifically, we find that the coherence collapse regime guarantees that the generation of a sensing matrix, necessary for sparse reconstruction, has a comparable level of performance to those constructed with Gaussian random sequences. Our result opens new avenues for the use of optical chaotic devices for signal processing applications at ultra-high speed.

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