A Comparison of vibrational transition probabilities for penning ionization and photoionization of no to the X1σ+ state of no+
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Reference10 articles.
1. Application of the Franck—Condon Principle to Molecular Excitation by Collision with Excited Atoms and Molecules
2. Afterglow Studies of the Reactions He+, He(23S), and O+ with Vibrationally Excited N2
3. Penning ionization electron spectroscopy. I. Determination of ionization potentials of polyatomic molecules
4. Reactions of excited atoms and molecules with atoms and molecules
5. Reactions of excited atoms and molecules with atoms and molecules
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1. Collision energy dependence of the reactions of metastable Ne (2p53s3P2, 3P0) with small molecules;Chemical Physics Letters;2009-06
2. Rotational-resolved pulsed field ionization photoelectron study of NO+(X 1Σ+,v+=0–32) in the energy range of 9.24–16.80 eV;The Journal of Chemical Physics;1999-08-15
3. Mass-selection of reactant ions for chemical ionization in quadrupole ion trap and triple quadrupole mass spectrometers;International Journal of Mass Spectrometry and Ion Processes;1989-11
4. Chemi‐ionization reactions of state‐selected electronically excited Ar(3P0) and Ar(3P2) atoms;The Journal of Chemical Physics;1985-04
5. Theoretical study of competing photoionization and photodissociation processes in the NO molecule;The Journal of Chemical Physics;1984-02
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