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High efficiency, high energy second-harmonic generation of Nd: glass laser radiation in large aperture CsLiB sub 6 O sub 1 sub 0 crystals

We have demonstrated the generation of a high-energy green laser pulse using large aperture CsLiB sub 6 O sub 1 sub 0 (CLBO) crystals. A pulsed energy of 25 J at 532-nm was generated using the 1064-nm incident Nd:glass laser radiation with an energy of 34 J. High conversion efficiency of 74% at inte...

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Detalles Bibliográficos
Autores principales: Kiriyama, H, Inoue, N, Yamakawa, K
Lenguaje:eng
Publicado: 2002
Materias:
Acceso en línea:http://cds.cern.ch/record/747946
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author Kiriyama, H
Inoue, N
Yamakawa, K
author_facet Kiriyama, H
Inoue, N
Yamakawa, K
author_sort Kiriyama, H
collection CERN
description We have demonstrated the generation of a high-energy green laser pulse using large aperture CsLiB sub 6 O sub 1 sub 0 (CLBO) crystals. A pulsed energy of 25 J at 532-nm was generated using the 1064-nm incident Nd:glass laser radiation with an energy of 34 J. High conversion efficiency of 74% at intensities of only 370 MW/cm sup 2 was obtained using a two-stage crystal architecture. This result represents the highest green pulse energy ever reported using the CLBO crystals. We discuss in detail the design and performance of SHG using CLBO crystals.
id cern-747946
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2002
record_format invenio
spelling cern-7479462019-09-30T06:29:59Zhttp://cds.cern.ch/record/747946engKiriyama, HInoue, NYamakawa, KHigh efficiency, high energy second-harmonic generation of Nd: glass laser radiation in large aperture CsLiB sub 6 O sub 1 sub 0 crystalsGeneral Theoretical PhysicsWe have demonstrated the generation of a high-energy green laser pulse using large aperture CsLiB sub 6 O sub 1 sub 0 (CLBO) crystals. A pulsed energy of 25 J at 532-nm was generated using the 1064-nm incident Nd:glass laser radiation with an energy of 34 J. High conversion efficiency of 74% at intensities of only 370 MW/cm sup 2 was obtained using a two-stage crystal architecture. This result represents the highest green pulse energy ever reported using the CLBO crystals. We discuss in detail the design and performance of SHG using CLBO crystals.JAERI-RESEARCH-2002-020oai:cds.cern.ch:7479462002
spellingShingle General Theoretical Physics
Kiriyama, H
Inoue, N
Yamakawa, K
High efficiency, high energy second-harmonic generation of Nd: glass laser radiation in large aperture CsLiB sub 6 O sub 1 sub 0 crystals
title High efficiency, high energy second-harmonic generation of Nd: glass laser radiation in large aperture CsLiB sub 6 O sub 1 sub 0 crystals
title_full High efficiency, high energy second-harmonic generation of Nd: glass laser radiation in large aperture CsLiB sub 6 O sub 1 sub 0 crystals
title_fullStr High efficiency, high energy second-harmonic generation of Nd: glass laser radiation in large aperture CsLiB sub 6 O sub 1 sub 0 crystals
title_full_unstemmed High efficiency, high energy second-harmonic generation of Nd: glass laser radiation in large aperture CsLiB sub 6 O sub 1 sub 0 crystals
title_short High efficiency, high energy second-harmonic generation of Nd: glass laser radiation in large aperture CsLiB sub 6 O sub 1 sub 0 crystals
title_sort high efficiency, high energy second-harmonic generation of nd: glass laser radiation in large aperture cslib sub 6 o sub 1 sub 0 crystals
topic General Theoretical Physics
url http://cds.cern.ch/record/747946
work_keys_str_mv AT kiriyamah highefficiencyhighenergysecondharmonicgenerationofndglasslaserradiationinlargeaperturecslibsub6osub1sub0crystals
AT inouen highefficiencyhighenergysecondharmonicgenerationofndglasslaserradiationinlargeaperturecslibsub6osub1sub0crystals
AT yamakawak highefficiencyhighenergysecondharmonicgenerationofndglasslaserradiationinlargeaperturecslibsub6osub1sub0crystals