Plasma Sources Science and Technology · 2014 · 95 citations · 37 references
Localized Excited StatePlasma Chemical ReactionsEngineeringRadical EmissionComputational ChemistryElectronic Excited StateGas DynamicPlasma SimulationExcited StatesMolecular KineticsPhysicsNanosecond Pulse DischargeAtomic PhysicsPhysical ChemistryNitrogen MoleculeNanophysicsExcited State PropertyModerate EnergyNatural SciencesSpectroscopyApplied PhysicsGas Discharge PlasmaChemical Kinetics
The present kinetic modelling calculation results provide key new insights into the kinetics of vibrational excitation of nitrogen and plasma chemical reactions in nanosecond pulse, ‘diffuse filament’ discharges in nitrogen and dry air at a moderate energy loading per molecule, ∼0.1 eV per molecule. It is shown that it is very important to take into account Coulomb collisions between electrons because they change the electron energy distribution function and, as a result, strongly affect populations of excited states and radical concentrations in the discharge. The results demonstrate that the apparent transient rise of N2 ‘first level’ vibrational temperature after the discharge pulse, as detected in the experiments, is due to the net downward V–V energy transfer in N2–N2 collisions, which increases the N2(X 1Σ, v = 1) population. Finally, a comparison of the model's predictions with the experimental data shows that NO formation in the afterglow occurs via reactive quenching of multiple excited electronic levels of nitrogen molecule, , by O atoms.
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The Particle Kinetics of Plasmas
I. P. Shkarofsky, T. W. Johnston, M. P. Bachynski et al. · American Journal of Physics · 1967 · 929 citations