Comparison of experimental and theoretical integral cross sections for D+H2(v=1, j=1)→HD(v’=1, j’)+H
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.461016
Reference43 articles.
1. Converged quantum mechanical calculation of the product vibration-rotation state distribution of the hydrogen atom + para-hydrogen reaction
2. Quantum-mechanical dynamics and quasiclassical trajectories for comparison to stimulated Raman pumping measurements of the high-energy state-to-state reaction dynamics of D+H2(ν=j=1)→HD(ν′=1,j′)+H
3. Effect of rotational excitation on state-to-state differential cross sections: deuterium atom + hydrogen .fwdarw. hydrogen deuteride + hydrogen atom
4. Quantum reactive scattering via the S-matrix version of the Kohn variational principle: Integral cross sections For H+H2(ν1=j1=0)→H2(ν2=1, j2= 1, 3) + H in the energy range Etotal = 0.9–1.4 eV
5. Quantum reactive scattering via the S‐matrix version of the Kohn variational principle: Differential and integral cross sections for D+H2 →HD+H
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