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DOE OSTI · 3003093

Waveform-dependent air fluorescence from neutral and ionic nitrogen molecules

Abstract

Laser-induced air fluorescence in the ultraviolet regime is primarily attributed to transitions between the C and B states in excited neutral N 2 molecules and between the B and X states in N$^+_2$ ions. However, the mechanism underlying the former remains contentious, as direct population to the C state by light fields is forbidden by electron spin constraints. In this work, we investigate the mechanism of air fluorescence from excited neutral N 2 molecules by carrier-envelope phase–stabilized sub–4 femtosecond pulses. Our results show that fluorescence from N$^+_2$ ions reaches a maximum with cosine-like pulses, while fluorescence from excited neutral N 2 molecules peaks with sine-like pulses. In addition, by scanning the chirp of the driving pulse, we find that ionic fluorescence is maximized with chirp-free pulses, whereas neutral fluorescence favors negatively chirped pulses. These observations, supported by classical trajectory Monte Carlo simulations, support the mechanism of intersystem crossing from excited spin-singlet states, which are populated via recollision-induced strong-field excitation.

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BibTeXRIS

Liang, Hao [Max Planck Society, Dresden (Germany). Max Planck Inst. for the Physics of Complex Systems] (ORCID:0000000257092634), Tsai, Ming-Shian [National Tsing Hua Univ., Hsinchu (Taiwan)] (ORCID:0000000205732644), Tseng, Chun-Chia [National Tsing Hua Univ., Hsinchu (Taiwan)], Chen, Ming-Chang [National Tsing Hua Univ., Hsinchu (Taiwan)] (ORCID:0000000265601339), Thumm, Uwe [Kansas State Univ., Manhattan, KS (United States)] (ORCID:0000000193786601), Han, Meng [Kansas State Univ., Manhattan, KS (United States)] (ORCID:0000000169526009). 2025-06-04. Waveform-dependent air fluorescence from neutral and ionic nitrogen molecules. https://doi.org/10.1126/sciadv.adu9200

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