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- W2014920806 abstract "The pulse mode of operation of the chemical oxygen iodine laser (COIL) is attractive for a large body of newapplications. Pulsed electric discharge is most effective to turn COIL operation into the pulse mode by instantproduction of iodine atoms. Numerical model is developed for simulations of the pulsed COIL initiated by electricdischarge. The model comprises a system of kinetic equations for neutral and charged species, electric circuit equation,gas thermal balance equation, and the photon balance equation. Reaction rate coefficients for processes involvingelectrons are found by solving the electron Boltzmann equation, which is recalculated in a course of computationswhen plasma parameters changed. The processes accounted for in the Boltzmann equation include excitation andionization of atoms and molecules, electron-ion recombination, electron-electron collisions, second-kind collisions, andstepwise excitation of molecules. The last processes are particularly important because of a high singlet oxygenconcentration in gas flow from the singlet oxygen chemical generator. Results of numerical simulations are comparedwith experimental laser pulse waveforms. The conclusion is drawn about satisfactory agreement of the theory with theexperiment. The mechanisms of iodine atoms production in the pulsed discharge are identified." @default.
- W2014920806 created "2016-06-24" @default.
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- W2014920806 date "2006-09-22" @default.
- W2014920806 modified "2023-09-23" @default.
- W2014920806 title "Modelling coil with iodine atoms produced by pulsed electric discharge" @default.
- W2014920806 doi "https://doi.org/10.1117/12.739337" @default.
- W2014920806 hasPublicationYear "2006" @default.
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