Broadband pump-probe imaging spectroscopy applicable to ultrafast single-shot events

We propose a scheme for frequency-resolved single-shot spectroscopy with an echelon mirror. The echelon mirror is employed to generate spatially encoded time delays for the white-light continuum probe beam; it produces a temporal step of 66 fs and an overall time delay of 33 ps. We demonstrate broad...

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Veröffentlicht in:Applied physics express 2014-02, Vol.7 (2), p.22402
Hauptverfasser: Minami, Yasuo, Yamaki, Hiromoto, Katayama, Ikufumi, Takeda, Jun
Format: Artikel
Sprache:eng
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Zusammenfassung:We propose a scheme for frequency-resolved single-shot spectroscopy with an echelon mirror. The echelon mirror is employed to generate spatially encoded time delays for the white-light continuum probe beam; it produces a temporal step of 66 fs and an overall time delay of 33 ps. We demonstrate broadband pump-probe imaging spectroscopy and present time-frequency two-dimensional images of the transient absorption of β-carotene between 420 and 630 nm with single-shot detection. The results show that this technique is a powerful tool for observing the ultrafast, broadband transient dynamics of materials that exhibit irreversible reactions or deterioration by laser pulse irradiation.
ISSN:1882-0778
1882-0786
DOI:10.7567/APEX.7.022402