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Plasma kinetics in molecular plasmas and modeling of reentry plasmas

Academic Article
Publication Date:
2011
abstract:
State-to-state non-equilibrium plasma kinetics is widely used to characterize cold molecular and reentry plasmas. The approach requires a high level of dynamical information, and demands a large effort in the creation of complete databases of state-resolved cross sections and rate coefficients. Recent results, emphasizing the dependence of elementary process probability on both the vibrational and rotational energy content of the H2 molecule, are presented for those channels governing the microscopic collisional dynamics in non-equilibrium plasmas, i.e. electron-impact induced resonant processes, vibrational deactivation and dissociation in atom-diatom collisions and atomic recombination at the surface. Results for H2 plasmas, i.e. negative ion sources for neutral beam injection in fusion reactors, RF parallel-plate reactors for microelectronics, atmospheric discharges and the shock wave formed in the hypersonic entry of vehicles in planetary atmosphere for aerothermodynamics, are discussed.
Iris type:
01.01 Articolo in rivista
Keywords:
Atomic and molecular physics; Nuclear physics; Plasma physics
List of contributors:
Capitelli, Mario; Diomede, Paola; Gorse, Claudine; Celiberto, Roberto; D'Ammando, Giuliano; Longo, Savino; Colonna, Gianpiero; Laricchiuta, Annarita; DE PASCALE, Olga; Esposito, Fabrizio; Pietanza, LUCIA DANIELA; Taccogna, Francesco
Authors of the University:
COLONNA GIANPIERO
DE PASCALE OLGA
ESPOSITO FABRIZIO
LARICCHIUTA ANNARITA
PIETANZA LUCIA DANIELA
TACCOGNA FRANCESCO
Handle:
https://iris.cnr.it/handle/20.500.14243/22828
Published in:
PLASMA PHYSICS AND CONTROLLED FUSION (PRINT)
Journal
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URL

http://iopscience.iop.org/0741-3335/53/12/124007/
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