Theoretical state‐to‐state cross sections for collisions of N+2(v)+Ar. II. Results at higher energies
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.457584
Reference36 articles.
1. State selected ion-molecule reactions
2. State selected ion–molecule reactions by a TESICO technique. V. N2+(v)+Ar→N2+Ar+
3. State-selected ion-molecule reactions: N2+(X, v″), N2+(A, v′) + Ar → N2 + Ar+
4. A state‐to‐state study of the electron transfer reactions N+2(X̃,v’=0–2)+Ar(1S0)→N2(X,v) +Ar+(2P3/2,1/2)
5. Absolute state‐to‐state total cross sections for the reactions N+2(X̃,v’=0–2) +Ar(1S0)→N2(X,v)+Ar+(2P3/2,1/2)
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1. Rovibrationally selected ion-molecule collision study using the molecular beam vacuum ultraviolet laser pulsed field ionization-photoion method: Charge transfer reaction of N2+(X 2Σg+; v+ = 0–2; N+ = 0–9) + Ar;The Journal of Chemical Physics;2012-09-12
2. Communication: Rovibrationally selected study of the N2+(X; v+ = 1, N+ = 0−8) + Ar charge transfer reaction using the vacuum ultraviolet laser pulsed field ionization-photoion method;The Journal of Chemical Physics;2011-05-28
3. The Semiclassical Time-Dependent Approach to Charge-Transfer Processes;Advances in Chemical Physics;2007-03-14
4. State-Selected and State-to-State Ion-Molecular Reaction Dynamics by Photoionization and Differential Reactivity Methods;Advances in Chemical Physics;2007-03-14
5. State-to-state cross-sections for N2+(X,ν′ = 1,2) + Ar and Ar+(2P ) + N2(X,ν = 0) at low energies;International Journal of Mass Spectrometry;2003-01
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