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High laser field effects in multiphoton ionization of Na2. Experiment and quantum calculations

✍ Scribed by T. Baumert; V. Engel; C. Meier; G. Gerber


Publisher
Elsevier Science
Year
1992
Tongue
English
Weight
589 KB
Volume
200
Category
Article
ISSN
0009-2614

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✦ Synopsis


Femtosecond pump/probe multiphoton ionization experiments on Na, molecules are performed. The dependence of the total Na: ion signal on the delay time and the intensity of the femtosecond laser pulses is studied in detail. It is observed that molecular vibrational wavepacket motion in different electronic states dominates the time dependence of the ion signal. For higher laser intensities the relative contributions from the A 'Z: and the 2 'Us states change dramatically, indicating the increasing importance of a two-electron versus a one-electron process. For even stronger fields ( 10" W/cm') a vibrational wavepacket in the electronic ground state X 'Z: is formed and its dynamics is also observed in the transient Na2+ signal. Timedependent quantum calculations are presented. The theoretical results agree well with the experiment.


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A cw dye laser is tuned over the B, A f-X transitions of Naz/Kz while a second laser or a high pressure lamp ionizes the excited stntcs. The ions CIE detected by mass-spcctromctry in the mixture of metal-atom clusters formed in a molecular noz-AC beam. The vibionic and flrovibronic spxtra obtained s