Recent advances in fundamentals and applications of random fiber lasers
Top Cited Papers
- 10 August 2015
- journal article
- research article
- Published by Optica Publishing Group in Advances in Optics and Photonics
- Vol. 7 (3), 516-569
- https://doi.org/10.1364/aop.7.000516
Abstract
Random fiber lasers blend together attractive features of traditional random lasers, such as low cost and simplicity of fabrication, with high-performance characteristics of conventional fiber lasers, such as good directionality and high efficiency. Low coherence of random lasers is important for speckle-free imaging applications. The random fiber laser with distributed feedback proposed in 2010 led to a quickly developing class of light sources that utilize inherent optical fiber disorder in the form of the Rayleigh scattering and distributed Raman gain. The random fiber laser is an interesting and practically important example of a photonic device based on exploitation of optical medium disorder. We provide an overview of recent advances in this field, including high-power and high-efficiency generation, spectral and statistical properties of random fiber lasers, nonlinear kinetic theory of such systems, and emerging applications in telecommunications and distributed sensing.Keywords
Funding Information
- Dynasty Foundation (Dmitry Zimin Foundation Dynasty)
- European Research Council (ERC) (267763)
- Ministry of Education and Science of the Russian Federation (14.120.14.228-MK, 14.B25.31.0003)
- National Natural Science Foundation of China (NSFC) (61205048, 61290312)
- Russian Foundation for Basic Research (RFBR) (15-02-07925)
- Russian Science Foundation (14-22-00118)
This publication has 150 references indexed in Scilit:
- Compact spectrometer based on a disordered photonic chipNature Photonics, 2013
- Recent progress in investigating optical rogue wavesJournal of Optics, 2013
- A cold-atom random laserNature Physics, 2013
- Rogue waves and their generating mechanisms in different physical contextsPhysics Reports, 2013
- Distributed feedback multimode Brillouin–Raman random fiber laser in the S-bandLaser Physics Letters, 2013
- Comparison of Brillouin-Raman comb fiber laser in two different configurationsLaser Physics, 2011
- Tunable Raman fiber laser induced by Rayleigh back-scattering in an ultra-long cavityJournal of the European Optical Society: Rapid Publications, 2011
- Random distributed feedback Raman fiber laser operating in a 1.2 μm wavelength rangeLaser Physics, 2011
- Extreme statistics in Raman fiber amplifiers: From analytical description to experimentsOptics Communications, 2011
- Widely tunable Raman ring laser using highly nonlinear fiberLaser Physics, 2009