High-power and highly efficient operation of wavelength-tunable Raman fiber lasers based on volume Bragg gratings

Highly efficient and high-power operation of Raman fiber lasers in fixed-wavelength and wavelength-tunable cavity configurations based on a graded-index multimode fiber is reported. Fixed-wavelength and wavelength tunable operating regimes are achieved using volume Bragg gratings (VBGs) with center...

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Veröffentlicht in:Optics express 2014-03, Vol.22 (6), p.6605-6612
Hauptverfasser: Liu, Jun, Shen, Deyuan, Huang, Haitao, Zhao, Chujun, Zhang, Xiaoqi, Fan, Dianyuan
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Sprache:eng
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Zusammenfassung:Highly efficient and high-power operation of Raman fiber lasers in fixed-wavelength and wavelength-tunable cavity configurations based on a graded-index multimode fiber is reported. Fixed-wavelength and wavelength tunable operating regimes are achieved using volume Bragg gratings (VBGs) with center wavelengths of 1658 nm and 1750 nm, respectively. The fixed-wavelength laser yielded a maximum output power of 10.5 W at 1658.3 nm with a FWHM linewidth of ~0.1 nm for the launched pump power of 23.4 W, corresponding to a slope efficiency of 82.7% with respect to the launched pump power. The measured beam quality in the form of M² factor is ~1.35, corresponding to the fundamental mode of the fiber. For the wavelength-tunable Raman fiber laser, a wavelength tuning range of 37 nm from 1638.5 to 1675.1 nm is obtained with a maximum output power of 3.6 W at 1658.5 nm for the launched pump power of 13.0 W.
ISSN:1094-4087
1094-4087
DOI:10.1364/OE.22.006605