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Reconfiguration of the multiwavelength operation of optical fiber ring lasers by the modifiable intra-cavity induced losses of an in-fiber tip probe modal Michelson interferometer

A straightforward and versatile method for switching from single to different multiwavelength laser emission in ring cavity fiber lasers is proposed and demonstrated experimentally. The method is based on using the changeable interference pattern from an optical fiber modal Michelson interferometer...

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Bibliographic Details
Published in:Laser physics 2018-03, Vol.28 (3), p.35107
Main Authors: Salceda-Delgado, G, Martinez-Rios, A, Sierra-Hernandez, J M, Rodríguez-Carreón, V C, Toral-Acosta, D, Selvas-Aguilar, R, Álvarez-Tamayo, R I, Castillo-Guzman, A A, Rojas-Laguna, R
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Language:English
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Summary:A straightforward and versatile method for switching from single to different multiwavelength laser emission in ring cavity fiber lasers is proposed and demonstrated experimentally. The method is based on using the changeable interference pattern from an optical fiber modal Michelson interferometer as a wavelength selective filter into the ring cavity laser. The interferometer is constructed using a bi-conical tapered fiber and a single-mode fiber segment, with these being spliced together to form an optical fiber tip probe. When the length of the single-mode fiber piece is modified, the phase difference between the interfering modes of the interferometer causes a change in the interferometer free spectral range. As a consequence, the laser intra-cavity losses lead to gain competition, which allows us to adjust the number of simultaneously generated laser lines. A multiwavelength reconfiguration of the laser from one up to a maximum of eight emission lines was obtained, with a maximum SNR of around 47 dBm.
ISSN:1054-660X
1555-6611
DOI:10.1088/1555-6611/aaa02e