Broadband mid-infrared fiber optical parametric oscillator based on a three-hole suspended-core chalcogenide fiber.
Identifieur interne : 000014 ( PubMed/Curation ); précédent : 000013; suivant : 000015Broadband mid-infrared fiber optical parametric oscillator based on a three-hole suspended-core chalcogenide fiber.
Auteurs : Hangyu Bai ; Xiong Yang ; Yizhen Wei ; Shiming GaoSource :
- Applied optics [ 1539-4522 ] ; 2016.
Abstract
A mid-infrared fiber optical parametric oscillator is proposed and designed based on a three-hole As2S5 suspended-core fiber (SCF). The eigenmodes of the SCF are depicted and the pump condition for single-mode operation is analyzed. The zero-dispersion wavelength is shifted to 2 μm by tuning the core diameter of the SCF. Using the degenerate four-wave mixing coupled-wave equations, a tuning range of the idler wavelength from 2 to 5 μm and a maximum conversion efficiency of 19% are numerically predicted in a 0.1-m-long SCF pumped by a 2.7 W thulium-doped fiber laser.
PubMed: 26835926
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<author><name sortKey="Wei, Yizhen" sort="Wei, Yizhen" uniqKey="Wei Y" first="Yizhen" last="Wei">Yizhen Wei</name>
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<front><div type="abstract" xml:lang="en">A mid-infrared fiber optical parametric oscillator is proposed and designed based on a three-hole As2S5 suspended-core fiber (SCF). The eigenmodes of the SCF are depicted and the pump condition for single-mode operation is analyzed. The zero-dispersion wavelength is shifted to 2 μm by tuning the core diameter of the SCF. Using the degenerate four-wave mixing coupled-wave equations, a tuning range of the idler wavelength from 2 to 5 μm and a maximum conversion efficiency of 19% are numerically predicted in a 0.1-m-long SCF pumped by a 2.7 W thulium-doped fiber laser.</div>
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<Abstract><AbstractText>A mid-infrared fiber optical parametric oscillator is proposed and designed based on a three-hole As2S5 suspended-core fiber (SCF). The eigenmodes of the SCF are depicted and the pump condition for single-mode operation is analyzed. The zero-dispersion wavelength is shifted to 2 μm by tuning the core diameter of the SCF. Using the degenerate four-wave mixing coupled-wave equations, a tuning range of the idler wavelength from 2 to 5 μm and a maximum conversion efficiency of 19% are numerically predicted in a 0.1-m-long SCF pumped by a 2.7 W thulium-doped fiber laser.</AbstractText>
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