The expansion of a titanium plume evaporated by a ns laser pulse and expanding in nitrogen environment has been investigated by means of a numerical model. The 2D fluid dynamic equations have been coupled with a chemical model implementing the state-to-state kinetics of nitrogen molecules, focusing on the role of molecular vibration in the plasma evolution. The calculated vibrational distributions considerably depart from the Boltzmann one, showing overpopulated tails. Large differences with results obtained considering macroscopic models have been predicted.
Advanced model for the interaction of a Ti plume produced by a ns-pulsed laser in a nitrogen environment
Colonna G.; Pascazio G.; Bonelli F.
Journal:
Spectrochimica acta. Part B, Atomic spectroscopy 179 pp. 106120-1 - 106120-8
Year:
2021
ISTP Authors: Gianpiero Colonna
Keywords: LIBS, Titanium target, Non-equilibrium, Plume modeling, Vibrational kinetics
Research Activitie: JOURNAL ARTICLES
Related products
-
Nuclear fusion 61 (7), pp. 076013-1 - 076013-15 Year: 2021 DOI: 10.1088/1741-4326/abfcdf
Prediction of temperature barriers in weakly collisional plasmas by a Lagrangian coherent structures computational tool
Di Giannatale G.; Bonfiglio D.; Cappello S.; Chacon L.; Veranda M.
-
Chemical physics letters (Print) 773 pp. 138603-1 - 138603-6 Year: 2021 DOI: 10.1016/j.cplett.2021.138603
Dispersion energy effects on oxygen interaction with cesiated molybdenum surfaces
Sanna N.; Rutigliano M.; Palma A.
-
Trends in Environmental Analytical Chemistry 30 pp. e00121-1 - e00121-12 Year: 2021 DOI: 10.1016/j.teac.2021.e00121
Laser-Induced Breakdown Spectroscopy applied to environmental systems and their potential contaminants. An overview of advances achieved in the last few years
Goncalves D.A.; Senesi G.S.; Nicolodelli G.
English
Italiano