The bound state spectrum of HOBr up to the dissociation limit: Evolution of saddle-node bifurcations
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.1569914
Reference34 articles.
1. Highly Excited Motion in Molecules: Saddle-Node Bifurcations and Their Fingerprints in Vibrational Spectra
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3. Vibrational spectroscopy of phosphaethyne (HCP). I. Potential energy surface, variational calculations, and comparison with experimental data
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5. The unimolecular dissociation of HCO. II. Comparison of calculated resonance energies and widths with high‐resolution spectroscopic data
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1. Thermal Rate Constants for the O(3P) + HBr and O(3P) + DBr Reactions: Transition-State Theory and Quantum Mechanical Calculations;The Journal of Physical Chemistry A;2013-11-21
2. The Study of Dynamical Potentials of Highly Excited Vibrational States of HOBr;International Journal of Molecular Sciences;2013-03-05
3. Disproportionation of Bromous Acid HOBrO by Direct O-Transfer and via Anhydrides O(BrO)2 and BrO–BrO2. An Ab Initio Study of the Mechanism of a Key Step of the Belousov–Zhabotinsky Oscillating Reaction;The Journal of Physical Chemistry A;2012-08-07
4. Fractional Bidromy in the Vibrational Spectrum of HOCl;Physical Review Letters;2010-03-19
5. Global dynamical analysis of vibrational manifolds of HOCl and HOBr under anharmonicity and Fermi resonance: the dynamical potential approach;Chinese Physics B;2010-01
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