A molecular beam study of electronic to electronic, vibrational, and rotational energy transfer in the collision of two step laser excited sodium with N2
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.447633
Reference13 articles.
1. Angular Distributions for a Model System of Nonadiabatic Molecular Collisions: The Quenching ofNa*(3p)byH2andD2
2. Crosssed beam study of the Na(32P32 + N2 quenching process: angular distributions with product state analysis
3. Stereochemical effects in the quenching of Na*(3 2P) by CO: Crossed beam experiment and ab initio CI potential energy surfaces
4. Surface hopping trajectory calculations for electronic rotational and vibrational inelastic collisions for the Na-N2 system
5. Trajectory‐surface‐hopping study of Na(3p 2P) +H2 → Na(3s 2S)+H2(v′, j′, θ)
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1. Symmetry and Angular Momentum in Collisions with Laser-Excited Polarized Atoms;Advances in Chemical Physics;2007-03-14
2. Comparison of the Na(4p)+H2 and Na(3p)+H2 reactive/quenching systems studied with CARS, resonance-enhanced CARS, and DFWM;The Journal of Chemical Physics;1997-06-08
3. Reactive collisions with excited-state atoms;J. Chem. Soc., Faraday Trans.;1995
4. The dynamics of electronic to vibrational, rotational, and translational energy transfer in collision of Ba(1P1) with diatomic molecules;The Journal of Chemical Physics;1992-09-15
5. Simultaneous long-time frequency stabilization of two dye lasers for a two-step atomic excitation;Measurement Science and Technology;1991-07-01
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