High power and efficient long wave IR ZnGeP2 parametric oscillator.
Identifieur interne : 000255 ( Ncbi/Merge ); précédent : 000254; suivant : 000256High power and efficient long wave IR ZnGeP2 parametric oscillator.
Auteurs : Espen Lippert [Norvège] ; Gunnar Rustad ; Gunnar Arisholm ; Knut StenersenSource :
- Optics express [ 1094-4087 ] ; 2008.
Descripteurs français
- KwdFr :
- MESH :
English descriptors
- KwdEn :
- MESH :
- chemical , chemistry : Germanium, Phosphorus, Zinc.
- instrumentation : Oscillometry.
- Amplifiers, Electronic, Equipment Design, Equipment Failure Analysis, Infrared Rays, Lasers, Solid-State.
Abstract
A high power, efficient, and tunable laser source in the 8-10 microm range, based on a ZnGeP(2) optical parametric oscillator (OPO) pumped by a hybrid 2.1 microm laser is demonstrated. The hybrid laser consists of a Q-switched Ho:YAG laser pumped by a 15 W CW thulium fiber laser. With 8.9 W of 2.1 microm pump power we obtained 0.95 W at 8 microm with an M(2)-value of 2.7 from an OPO with two walk-off compensating crystals.
PubMed: 18772998
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pubmed:18772998Le document en format XML
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<term>Equipment Failure Analysis</term>
<term>Germanium (chemistry)</term>
<term>Infrared Rays</term>
<term>Lasers, Solid-State</term>
<term>Oscillometry (instrumentation)</term>
<term>Phosphorus (chemistry)</term>
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<term>Analyse de panne d'appareillage</term>
<term>Conception d'appareillage</term>
<term>Germanium ()</term>
<term>Lasers à solide</term>
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<term>Analyse de panne d'appareillage</term>
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<term>Germanium</term>
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<front><div type="abstract" xml:lang="en">A high power, efficient, and tunable laser source in the 8-10 microm range, based on a ZnGeP(2) optical parametric oscillator (OPO) pumped by a hybrid 2.1 microm laser is demonstrated. The hybrid laser consists of a Q-switched Ho:YAG laser pumped by a 15 W CW thulium fiber laser. With 8.9 W of 2.1 microm pump power we obtained 0.95 W at 8 microm with an M(2)-value of 2.7 from an OPO with two walk-off compensating crystals.</div>
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<Abstract><AbstractText>A high power, efficient, and tunable laser source in the 8-10 microm range, based on a ZnGeP(2) optical parametric oscillator (OPO) pumped by a hybrid 2.1 microm laser is demonstrated. The hybrid laser consists of a Q-switched Ho:YAG laser pumped by a 15 W CW thulium fiber laser. With 8.9 W of 2.1 microm pump power we obtained 0.95 W at 8 microm with an M(2)-value of 2.7 from an OPO with two walk-off compensating crystals.</AbstractText>
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