Rotational coherence effects in the femtosecond photodissociation of ICN
- 26 May 1989
- journal article
- Published by Elsevier in Chemical Physics Letters
- Vol. 157 (6) , 505-511
- https://doi.org/10.1016/s0009-2614(89)87400-7
Abstract
No abstract availableKeywords
This publication has 26 references indexed in Scilit:
- Molecular state evolution after excitation with an ultra-short laser pulse: A quantum analysis of NaI and NaBr dissociationChemical Physics Letters, 1988
- Femtosecond Clocking of the Chemical BondScience, 1988
- The 266 nm photolysis of ICN: Recoil velocity anisotropies and nascent E,V,R,T excitations for the CN+I(2P3/2) and CN+I(2P1/2) channelsThe Journal of Chemical Physics, 1985
- Photodissociation dynamics of nozzle-cooled iodine cyanide (ICN)The Journal of Physical Chemistry, 1984
- Photodissociation of ICN at 351, 337, and 308 nm. Rotational and vibrational energy disposal in CN(X2Σ+)Chemical Physics, 1983
- Photodissociation of triatomic molecules: Rotational scattering effectsa)The Journal of Chemical Physics, 1983
- Photofragment spectroscopy of ICN at 266.0 nm and 299.4 nm: Vibrational and rotational distributions of CN(X 2Σ+)Chemical Physics, 1982
- Wavelength dependence of the I(52P12,32) branching ratio from ICN Ã state photolysisChemical Physics Letters, 1980
- Efficient production of I(52P) in the photodissociation of ICNChemical Physics Letters, 1979
- Electronic, vibrational and rotational energy partitioning of CN radicals from the laser photolysis of ICN at 266 nmChemical Physics Letters, 1977