Title :
Time-resolved measurement of vibrational wave-packet dynamics of H2+ using multicolor probe pulses
Author :
Furukawa, Yudai ; Okino, Tsuyoshi ; Nabekawa, Yasuo ; Eilanlou, A. Amani ; Takahashi, Eiji J. ; Yamanouchi, Kazuhiko ; Midorikawa, Katsumi
Author_Institution :
Extreme Photonics Res. Group, RIKEN Adv. Sci. Inst., Wako, Japan
Abstract :
Real-time measurement of ultrafast wave-packet dynamics has been possible with advances in short pulse laser technology. The vibrational wave-packet motion of molecular hydrogen ions, H2+ or D2+, is one of the simple models investigated experimentally using ultrashort laser pulses, a few-cycle Ti: sapphire laser pulse [1], high harmonic generation pulse [2,3], and extreme ultraviolet (XUV) free-electron laser pulse [4]. To measure the vibrational wave-packet dynamics of H2+ the durations of both pump and probe pulses should be shorter than its vibrational period. We have demonstrated that sub-10 fs high harmonic pulses generated from a sub-15 fs Ti:sapphire laser pulse can be utilized to observe time evolution of the vibrational motion of D2+[3]. In this paper, we report on the time-resolved and vibrational-mode-resolved measurement of the wave-packet dynamics of H2+ using ultrashort pump and probe pulses, which are generated via high-harmonic generation (HHG) scheme.
Keywords :
free electron lasers; high-speed optical techniques; hydrogen; optical harmonic generation; optical pulse generation; sapphire; Al2O3:Ti; H2+; H2+ ions; extreme ultraviolet free-electron laser pulse; high harmonic generation pulse; high-harmonic generation scheme; molecular hydrogen ions; multicolor probe pulses; short pulse laser technology; time-resolved measurement; ultrafast wave-packet dynamics; ultrashort laser pulses; vibrational wave-packet dynamics; wave-packet dynamics;
Conference_Titel :
Lasers and Electro-Optics Europe (CLEO EUROPE/IQEC), 2013 Conference on and International Quantum Electronics Conference
Conference_Location :
Munich
Print_ISBN :
978-1-4799-0593-5
DOI :
10.1109/CLEOE-IQEC.2013.6801022