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Continuously tunable diamond Raman laser for resonance laser ionization

We demonstrate a highly efficient, tunable, ∼5 GHz line- width diamond Raman laser operating at 479 nm. The diamond laser was pumped by a wavelength-tunable intra- cavity frequency-doubled titanium sapphire (Ti:Sapphire) laser operating at around 450 nm, at a repetition rate of 10 kHz with a pulse d...

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Detalles Bibliográficos
Autores principales: Chrysalidis, Katerina, Fedosseev, Valentin N, Marsh, Bruce A, Mildren, Richard P, Spence, David J, Wendt, Klaus D A, Wilkins, Shane G, Granados, Eduardo
Lenguaje:eng
Publicado: 2019
Acceso en línea:https://dx.doi.org/10.1364/OL.44.003924
http://cds.cern.ch/record/2690551
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author Chrysalidis, Katerina
Fedosseev, Valentin N
Marsh, Bruce A
Mildren, Richard P
Spence, David J
Wendt, Klaus D A
Wilkins, Shane G
Granados, Eduardo
author_facet Chrysalidis, Katerina
Fedosseev, Valentin N
Marsh, Bruce A
Mildren, Richard P
Spence, David J
Wendt, Klaus D A
Wilkins, Shane G
Granados, Eduardo
author_sort Chrysalidis, Katerina
collection CERN
description We demonstrate a highly efficient, tunable, ∼5 GHz line- width diamond Raman laser operating at 479 nm. The diamond laser was pumped by a wavelength-tunable intra- cavity frequency-doubled titanium sapphire (Ti:Sapphire) laser operating at around 450 nm, at a repetition rate of 10 kHz with a pulse duration of 50 ns. The Raman reso- nator produced a continuously tunable output with high stability, high conversion efficiency (28%), and beam quality (M$^{2}$ <1.2). We also demonstrate that the linewidth and tunability of the pump laser is directly transferred to the Stokes output. Our results show that diamond Raman lasers offer great potential for spectroscopic applications, such as resonance laser ionization, in an all-solid-state platform.
id oai-inspirehep.net-1753492
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
record_format invenio
spelling oai-inspirehep.net-17534922022-08-10T12:25:40Zdoi:10.1364/OL.44.003924http://cds.cern.ch/record/2690551engChrysalidis, KaterinaFedosseev, Valentin NMarsh, Bruce AMildren, Richard PSpence, David JWendt, Klaus D AWilkins, Shane GGranados, EduardoContinuously tunable diamond Raman laser for resonance laser ionizationWe demonstrate a highly efficient, tunable, ∼5 GHz line- width diamond Raman laser operating at 479 nm. The diamond laser was pumped by a wavelength-tunable intra- cavity frequency-doubled titanium sapphire (Ti:Sapphire) laser operating at around 450 nm, at a repetition rate of 10 kHz with a pulse duration of 50 ns. The Raman reso- nator produced a continuously tunable output with high stability, high conversion efficiency (28%), and beam quality (M$^{2}$ <1.2). We also demonstrate that the linewidth and tunability of the pump laser is directly transferred to the Stokes output. Our results show that diamond Raman lasers offer great potential for spectroscopic applications, such as resonance laser ionization, in an all-solid-state platform.oai:inspirehep.net:17534922019
spellingShingle Chrysalidis, Katerina
Fedosseev, Valentin N
Marsh, Bruce A
Mildren, Richard P
Spence, David J
Wendt, Klaus D A
Wilkins, Shane G
Granados, Eduardo
Continuously tunable diamond Raman laser for resonance laser ionization
title Continuously tunable diamond Raman laser for resonance laser ionization
title_full Continuously tunable diamond Raman laser for resonance laser ionization
title_fullStr Continuously tunable diamond Raman laser for resonance laser ionization
title_full_unstemmed Continuously tunable diamond Raman laser for resonance laser ionization
title_short Continuously tunable diamond Raman laser for resonance laser ionization
title_sort continuously tunable diamond raman laser for resonance laser ionization
url https://dx.doi.org/10.1364/OL.44.003924
http://cds.cern.ch/record/2690551
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AT spencedavidj continuouslytunablediamondramanlaserforresonancelaserionization
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