paper

Electronic State Population Dynamics upon Ultrafast Strong Field Ionization and Fragmentation of Molecular Nitrogen

arXiv:2409.06757 · doi:10.1103/PhysRevLett.129.123002

Abstract

Air-lasing from single ionized N molecules induced by laser filamentation in air has been intensively investigated and the mechanisms responsible for lasing are currently highly debated. We use ultrafast nitrogen K-edge spectroscopy to follow the strong field ionization and fragmentation dynamics of N upon interaction with an ultrashort 800 nm laser pulse. Using probe pulses generated by extreme high-order harmonic generation, we observe transitions indicative of the formation of the electronic ground X, first excited A and second excited B states of N on femtosecond time scales, from which we can quantitatively determine the time-dependent electronic state population distribution dynamics of N. Our results show a remarkably low population of the A state, and nearly equal populations of the X and B states. In addition, we observe fragmentation of N into N and N on a time scale of several tens of picoseconds that we assign to significant collisional dynamics in the plasma, resulting in dissociative excitation of N.

References in corpus (1)

Electronic State Population Dynamics upon Ultrafast Strong Field Ionization and Fragmentation of Molecular Nitrogen · wovepaper