Vibrational energy transfer between I2(BΠ0u+3,ν′=21) and He at very low temperatures: Impulsive versus complex formation mechanisms assisted by tunneling through the centrifugal barrier
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.2987706
Reference37 articles.
1. Low energy collisional relaxation of I*2 in He:Evidence for resonance enhanced vibrational deactivation
2. Energy redistribution in low energy collisions between I2* and He
3. Collision induced relaxation of an electronically excited molecule: Evidence for low energy resonance enhanced vibrational deactivation
4. Low energy vibrational relaxation of the diatomic molecule I2 (B) by collision with He
5. A theoretical analysis of very low energy collision induced vibrational relaxation in the system He–I2 (3Π0u+)
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1. The role of orbiting resonances in the vibrational relaxation of I2(B,v′ = 21) by collisions with He at very low energies: a theoretical and experimental study;Physical Chemistry Chemical Physics;2012
2. Vibrational predissociation dynamics of Cl2(B)–He2: a wave packet study;Physical Chemistry Chemical Physics;2011
3. The role of orbiting resonances in the vibrational predissociation of Ne–Br2(B);Physica Scripta;2009-10
4. Vibrational Predissociation Dynamics of He−I2(B) Mediated by Orbiting Resonances;The Journal of Physical Chemistry A;2009-03-02
5. Effect of the intermolecular hydrogen bond conformation on the structure and reactivity of the p-cresol(H2O)(NH3) van der Waals complex;Physical Chemistry Chemical Physics;2009
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