About: Thulium-doped silica fibers with enhanced 3H4 level lifetime for fiber lasers and amplifiers     Goto   Sponge   Distinct   Permalink

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  • Thulium-doped fibers are renowned for their applications in high power fiber lasers at around 2 μm. It is despite the low quantum conversion efficiency of 3F4 level in thulium doped silica fibers, which is about 10% compared to 100% quantum conversion efficiency of the ytterbium- and erbium-doped fibers, at around 1 μm and 1.5 μm, respectively. The lower quantum conversion efficiency increases the 2 μm laser threshold but has almost no effect on the laser slope efficiency. Indeed, kW-class thulium-doped fiber lasers have been demonstrated recently. Quantum conversion efficiency of the 3H4 level in non-modified silica fibers is much lower than that of 3F4 level, only about 2% and therefore most of the applications of laser transitions originating from 3H4 level are hindered by the lack of reliable low-phonon fiber host. We review of our contributions towards the comprehension and improvement of the spectroscopic properties of thulium ions doped into silica. We show potential of the developed thulium-doped fibers with enhanced 3H4 level lifetime for applications in fiber lasers around 810 nm and in fiber amplifiers for communication S-band (1460-1530 nm)
  • Thulium-doped fibers are renowned for their applications in high power fiber lasers at around 2 μm. It is despite the low quantum conversion efficiency of 3F4 level in thulium doped silica fibers, which is about 10% compared to 100% quantum conversion efficiency of the ytterbium- and erbium-doped fibers, at around 1 μm and 1.5 μm, respectively. The lower quantum conversion efficiency increases the 2 μm laser threshold but has almost no effect on the laser slope efficiency. Indeed, kW-class thulium-doped fiber lasers have been demonstrated recently. Quantum conversion efficiency of the 3H4 level in non-modified silica fibers is much lower than that of 3F4 level, only about 2% and therefore most of the applications of laser transitions originating from 3H4 level are hindered by the lack of reliable low-phonon fiber host. We review of our contributions towards the comprehension and improvement of the spectroscopic properties of thulium ions doped into silica. We show potential of the developed thulium-doped fibers with enhanced 3H4 level lifetime for applications in fiber lasers around 810 nm and in fiber amplifiers for communication S-band (1460-1530 nm) (en)
Title
  • Thulium-doped silica fibers with enhanced 3H4 level lifetime for fiber lasers and amplifiers
  • Thulium-doped silica fibers with enhanced 3H4 level lifetime for fiber lasers and amplifiers (en)
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  • Thulium-doped silica fibers with enhanced 3H4 level lifetime for fiber lasers and amplifiers
  • Thulium-doped silica fibers with enhanced 3H4 level lifetime for fiber lasers and amplifiers (en)
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  • RIV/67985882:_____/12:00396889!RIV14-MSM-67985882
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  • I, P(GAP102/10/2139), P(GAP205/11/1840), P(ME10119)
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  • 174404
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  • RIV/67985882:_____/12:00396889
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  • Erbium doped fibers; optical fibers; Silica fibers (en)
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  • [2B3BF286A45A]
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  • Penang
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  • NEW YORK
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  • 3RD INTERNATIONAL CONFERENCE ON PHOTONICS 2012 (ICP 2012)
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  • Kašík, Ivan
  • Peterka, Pavel
  • Honzátko, Pavel
  • Dussardier, B.
  • Blanc, W.
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  • 000320658500016
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number of pages
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  • 10.1109/ICP.2012.6379827
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  • IEEE
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  • 978-1-4673-1463-3
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