CITIUS: an infrared-extreme ultraviolet light source for fundamental and applied ultrafast science

We present the main features of CITIUS, a new light source for ultrafast science, generating tunable, intense, femtosecond pulses in the spectral range from infrared to extreme ultraviolet (XUV). The XUV pulses (about 10(5)-10(8) photons/pulse in the range 14-80 eV) are produced by laser-induced hig...

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Veröffentlicht in:Review of scientific instruments 2014-02, Vol.85 (2), p.023104-023104
Hauptverfasser: Grazioli, C, Callegari, C, Ciavardini, A, Coreno, M, Frassetto, F, Gauthier, D, Golob, D, Ivanov, R, Kivimäki, A, Mahieu, B, Bučar, B, Merhar, M, Miotti, P, Poletto, L, Polo, E, Ressel, B, Spezzani, C, De Ninno, G
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Sprache:eng
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Zusammenfassung:We present the main features of CITIUS, a new light source for ultrafast science, generating tunable, intense, femtosecond pulses in the spectral range from infrared to extreme ultraviolet (XUV). The XUV pulses (about 10(5)-10(8) photons/pulse in the range 14-80 eV) are produced by laser-induced high-order harmonic generation in gas. This radiation is monochromatized by a time-preserving monochromator, also allowing one to work with high-resolution bandwidth selection. The tunable IR-UV pulses (10(12)-10(15) photons/pulse in the range 0.4-5.6 eV) are generated by an optical parametric amplifier, which is driven by a fraction of the same laser pulse that generates high order harmonics. The IR-UV and XUV pulses follow different optical paths and are eventually recombined on the sample for pump-probe experiments. We also present the results of two pump-probe experiments: with the first one, we fully characterized the temporal duration of harmonic pulses in the time-preserving configuration; with the second one, we demonstrated the possibility of using CITIUS for selective investigation of the ultra-fast dynamics of different elements in a magnetic compound.
ISSN:0034-6748
1089-7623
DOI:10.1063/1.4864298