On the difficulty of N(4S) atom recombination to explain the appearance of the pink afterglow in a N2flowing discharge
Author:
Publisher
IOP Publishing
Subject
Surfaces, Coatings and Films,Acoustics and Ultrasonics,Condensed Matter Physics,Electronic, Optical and Magnetic Materials
Link
http://stacks.iop.org/0022-3727/39/i=1/a=019/pdf
Reference33 articles.
1. Excitation Mechanism for the Nitrogen Pink Afterglow
2. Role of long-lived N2(X1Σg+,v) molecules and N2(A3Σu+) and N2(a'1Σu-) states in the light emissions of an N2afterglow
3. Kinetics of N2(A3Σu+) molecules and ionization mechanisms in the afterglow of a flowing N2microwave discharge
4. Self-consistent kinetic model of the short-lived afterglow in flowing nitrogen
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1. On the Use of Measured Post-Discharge Gas Temperature Profiles in the Kinetic Modeling of the Pink Afterglow of Flowing N2 DC Discharges;Brazilian Journal of Physics;2024-02-15
2. Effect of discharge tube temperature on ${{\rm{N}}}_{2}({A}^{3}{{\rm{\Sigma }}}_{u}^{+})$ and ${\rm{N}}{(}^{4}{S}^{{\rm{o}}})$ densities in remote nitrogen plasma;Japanese Journal of Applied Physics;2020-08-25
3. Modelling N2–O2 plasmas: volume and surface kinetics;Plasma Sources Science and Technology;2019-07-25
4. Excitation of mercury atoms in nitrogen post-discharge;Journal of Physics: Conference Series;2014-06-03
5. The local dissociation phenomenon in a nitrogen afterglow;Journal of Physics D: Applied Physics;2012-11-19
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