Number of the records: 1  

Zero-phonon-line pumped 1 kHz Yb:YAG thin-disk regenerative amplifier

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    SYSNO ASEP0441756
    Document TypeC - Proceedings Paper (int. conf.)
    R&D Document TypeConference Paper
    TitleZero-phonon-line pumped 1 kHz Yb:YAG thin-disk regenerative amplifier
    Author(s) Chyla, Michal (FZU-D) RID, ORCID
    Miura, Taisuke (FZU-D) RID
    Smrž, Martin (FZU-D) RID, ORCID
    Severová, Patricie (FZU-D) RID, ORCID
    Novák, Ondřej (FZU-D) RID, ORCID
    Endo, Akira (FZU-D) RID
    Mocek, Tomáš (FZU-D) RID, ORCID, SAI
    Source TitleSolid State Lasers XXII: Technology and Devices. - Bellingham : SPIE, 2013 / Clarkson W.A. ; Shori R.K. - ISSN 0277-786X - ISBN 978-0-8194-9368-2
    Pages85991q
    Number of pages8 s.
    Publication formPrint - P
    ActionSolid State Lasers XXII: Technology and Devices
    Event date03.02.2013-05.02.2013
    VEvent locationSan Francisco
    CountryUS - United States
    Event typeWRD
    Languageeng - English
    CountryUS - United States
    KeywordsYb:YAG ; thin-disk ; regenerative amplifier ; high energy ; picosecond
    Subject RIVBH - Optics, Masers, Lasers
    Institutional supportFZU-D - RVO:68378271
    UT WOS000321895100055
    EID SCOPUS84875928210
    DOI10.1117/12.2004535
    AnnotationWe are developing high-energy thin-disk regenerative amplifier operating at kilohertz repetition rate delivering 1-2 ps long pulses for science and industry applications. We have developed a prototype Yb:YAG thin disk regenerative amplifier which can operate up to 10-kHz repetition rate pumped by the 940-nm laser diode. The pulse energy was achieved to 5-mJ at 10-kHz operation and to 29.5-mJ at 1-kHz operation. We found that the pulsed pumping method can improve the optical-to-optical efficiency. We demonstrated the zero-phonon-line-pumped (968.825-nm(1)) regenerative amplifier at 1-kHz, and obtained the output energy of 32-mJ with nearly diffraction limited beam profile.
    WorkplaceInstitute of Physics
    ContactKristina Potocká, potocka@fzu.cz, Tel.: 220 318 579
    Year of Publishing2015
Number of the records: 1  

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