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Wide spectral range optical characterization of yttrium aluminum garnet (YAG) single crystal by the universal dispersion model

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    SYSNO ASEP0552582
    Document TypeJ - Journal Article
    R&D Document TypeJournal Article
    Subsidiary JČlánek ve WOS
    TitleWide spectral range optical characterization of yttrium aluminum garnet (YAG) single crystal by the universal dispersion model
    Author(s) Franta, D. (CZ)
    Muresan, Mihai-George (FZU-D) ORCID
    Number of authors2
    Source TitleOptical Materials Express. - : Optical Society of America - ISSN 2159-3930
    Roč. 11, č. 12 (2021), s. 3930-3945
    Number of pages16 s.
    Languageeng - English
    CountryUS - United States
    KeywordsYAG crystal ; Voigt peak approximation ; crystaline material
    Subject RIVBH - Optics, Masers, Lasers
    OECD categoryOptics (including laser optics and quantum optics)
    R&D ProjectsEF15_006/0000674 GA MŠMT - Ministry of Education, Youth and Sports (MEYS)
    LM2018110 GA MŠMT - Ministry of Education, Youth and Sports (MEYS)
    Method of publishingOpen access
    Institutional supportFZU-D - RVO:68378271
    UT WOS000726514900001
    EID SCOPUS85119993918
    DOI10.1364/OME.441088
    AnnotationPure YAG single crystal was optically characterized in the wide spectral range (from far IR to vacuum UV) by applying the universal dispersion model. Data obtained from a broad range of characterization instruments and methods was simultaneously processed using least square method and the result were compared with literature findings. The universal dispersion model describes individual elementary electron and phonon excitations in materials as separate contributions. For the first time recorded, an asymmetric Voigt peak approximation was used for modeling the contribution of one-phonon absorption in crystalline material. The optical constants are presented both graphically and in detailed dispersion parameters sets.
    WorkplaceInstitute of Physics
    ContactKristina Potocká, potocka@fzu.cz, Tel.: 220 318 579
    Year of Publishing2022
    Electronic addresshttp://hdl.handle.net/11104/0327762
Number of the records: 1  

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