Rotational effect on SRVL nonradiative transitions: Linewidth and Coriolis coupling
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.444396
Reference27 articles.
1. Electric field dependence of collisionless, single rotational level lifetimes of S1 H2CO
2. Electric field dependence of collisionless, single rotational level lifetimes of S1 H2CO
3. Electric field dependence of collisionless, single rotational level lifetimes of S1 H2CO
4. Electric field dependence of collisionless, single rotational level lifetimes of S1 H2CO
5. Single rotational lifetimes of formaldehyde in a hypersonic jet
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1. An ab initio study of the internal conversion rate from the first singlet excited state to the ground state in formaldehyde;The Journal of Chemical Physics;1996-10-08
2. An explanation of the highly efficient magnetic quenching of fluorescence in intermediate case molecules based on two manifold models;The Journal of Chemical Physics;1995-07
3. Theory of fluorescence excitation spectra using anharmonic‐Coriolis coupling inS1and internal conversion toS0. II. Application to the channel three problem in benzene for the 14112band;The Journal of Chemical Physics;1993-10
4. Photophysics of HCO2H(Ã) close to its electronic origin;J. Chem. Soc., Faraday Trans.;1992
5. Coriolis coupling effects on the angular distribution of photoelectrons from time-resolved two-photon ionization of polyatomic molecules;Chemical Physics Letters;1989-02
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