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Theoretical modeling of fiber laser at 810 nm based on thulium-doped silica fibers with enhanced 3H4 level lifetime

Identifieur interne : 000032 ( Hal/Checkpoint ); précédent : 000031; suivant : 000033

Theoretical modeling of fiber laser at 810 nm based on thulium-doped silica fibers with enhanced 3H4 level lifetime

Auteurs : Pavel Peterka [République tchèque] ; Ivan Kašík [République tchèque] ; Anirban Dhar [République tchèque] ; Bernard Dussardier [France] ; Wilfried Blanc [France]

Source :

RBID : Hal:hal-00561410

Abstract

A compact upconversion fiber laser operating around 810 nm is proposed using thulium-doped silica-based fiber with locally modified thulium environment by high alumina codoping. Using a comprehensive numerical model of thulium doped fiber we investigate performance of the proposed laser. Comparison with two other thulium hosts, fluoride glass and standard silica, is presented. Efficient lasing can be expected even for silica based fiber for specific ranges of the fiber and laser cavity parameters, especially when 3H4 lifetime is enhanced. With moderate pump power of 5 W at wavelength of 1064 nm, the predicted output power of the upconversion laser is about 2 W at 810 nm.

Url:
DOI: 10.1364/OE.19.002773

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Le document en format XML

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<div type="abstract" xml:lang="en">A compact upconversion fiber laser operating around 810 nm is proposed using thulium-doped silica-based fiber with locally modified thulium environment by high alumina codoping. Using a comprehensive numerical model of thulium doped fiber we investigate performance of the proposed laser. Comparison with two other thulium hosts, fluoride glass and standard silica, is presented. Efficient lasing can be expected even for silica based fiber for specific ranges of the fiber and laser cavity parameters, especially when 3H4 lifetime is enhanced. With moderate pump power of 5 W at wavelength of 1064 nm, the predicted output power of the upconversion laser is about 2 W at 810 nm.</div>
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<idno type="halAuthorId">343534</idno>
<affiliation ref="#struct-965"></affiliation>
</author>
</analytic>
<monogr>
<idno type="halJournalId" status="VALID">1882</idno>
<idno type="issn">1094-4087</idno>
<title level="j">Optics Express</title>
<imprint>
<publisher>Optical Society of America</publisher>
<biblScope unit="volume">19</biblScope>
<biblScope unit="issue">3</biblScope>
<biblScope unit="pp">2773</biblScope>
<date type="datePub">2011</date>
</imprint>
</monogr>
<idno type="doi">10.1364/OE.19.002773</idno>
</biblStruct>
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<langUsage>
<language ident="en">English</language>
</langUsage>
<textClass>
<classCode scheme="classification">(140.3510) Lasers, fiber; (140.3613) Lasers, upconversion.</classCode>
<classCode scheme="halDomain" n="phys.phys.phys-optics">Physics [physics]/Physics [physics]/Optics [physics.optics]</classCode>
<classCode scheme="halTypology" n="ART">Journal articles</classCode>
</textClass>
<abstract xml:lang="en">A compact upconversion fiber laser operating around 810 nm is proposed using thulium-doped silica-based fiber with locally modified thulium environment by high alumina codoping. Using a comprehensive numerical model of thulium doped fiber we investigate performance of the proposed laser. Comparison with two other thulium hosts, fluoride glass and standard silica, is presented. Efficient lasing can be expected even for silica based fiber for specific ranges of the fiber and laser cavity parameters, especially when 3H4 lifetime is enhanced. With moderate pump power of 5 W at wavelength of 1064 nm, the predicted output power of the upconversion laser is about 2 W at 810 nm.</abstract>
</profileDesc>
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   |texte=   Theoretical modeling of fiber laser at 810 nm based on thulium-doped silica fibers with enhanced 3H4 level lifetime
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