Ultrafast dynamics of autoionizing states in O2 probed by laser-field-assisted XUV photoionization
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Date
2013
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Abstract
Dynamics of the autoionizing states in O<inf>2</inf> was investigated using the method of laser-field-assisted extreme-ultraviolet photoionization. Harmonics, ranging from 9th to 21st orders generated in Kr with 25 fs laser pulses at 820 nm, were employed to carry out photoionization of O<inf>2</inf>. Distinct autoionization features in the photoelectron spectrum, stemming from the resonant excitation of superexcited states of O<inf>2</inf> by the 11th harmonic, were observed. The superexcited states, referred to as autoionizing states, were identified to be the ?? = 0, n = 5 Rydberg states converging to the b 4?<inf>g</inf>- state of O <inf>2</inf>+. Infrared laser pulses were utilized as the probe to monitor time-varying characteristics of photoionization and autoionization of O<inf>2</inf>. A decay time of 21 fs was obtained for the autoionizing states of O<inf>2</inf> by deconvoluting the pump-probe results in O<inf>2</inf> and Ar. © 2013 American Physical Society.
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Keywords
Autoionizing state, Extreme-ultraviolet photoionizations, Fs laser pulse, Photoelectron spectrum, Resonant excitation, Superexcited state, Time-varying characteristics, Ultra-fast dynamics, Laser pulses, Probes, Photoionization
Citation
Physical Review A - Atomic, Molecular, and Optical Physics, 2013, 88, 4, pp. -
