Narrowband Raman lasing in a polarization-maintaining two-core fiber (TCF) is demonstrated. Femtosecond point-by-point inscription of fiber Bragg gratings (FBGs) in individual cores produces a half-open cavity with random distributed feedback. The laser linewidth in the cavity with a single FBG inscribed in one core of the TCF reduced by ∼2 times with respect to the cavity with a fiber loop mirror. It is shown that the inscription of two FBGs in different cores leads to the formation of a Michelson-type interferometer, leading to the modulation of generation spectra near threshold. This technique offers new possibilities for spectral filtering or multi-wavelength generation.
Random raman fiber laser based on a twin-core fiber with FBGs inscribed by femtosecond radiation / Skvortsov, M. I.; Abdullina, S. R.; Wolf, A. A.; Dostovalov, A. V.; Vlasov, A. A.; Lobach, I. A.; Wabnitz, S.; Babin, S. A.. - In: OPTICS LETTERS. - ISSN 0146-9592. - 44:2(2019), pp. 295-298. [10.1364/OL.44.000295]
Random raman fiber laser based on a twin-core fiber with FBGs inscribed by femtosecond radiation
Wabnitz, S.;
2019
Abstract
Narrowband Raman lasing in a polarization-maintaining two-core fiber (TCF) is demonstrated. Femtosecond point-by-point inscription of fiber Bragg gratings (FBGs) in individual cores produces a half-open cavity with random distributed feedback. The laser linewidth in the cavity with a single FBG inscribed in one core of the TCF reduced by ∼2 times with respect to the cavity with a fiber loop mirror. It is shown that the inscription of two FBGs in different cores leads to the formation of a Michelson-type interferometer, leading to the modulation of generation spectra near threshold. This technique offers new possibilities for spectral filtering or multi-wavelength generation.File | Dimensione | Formato | |
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