Rotational symmetry control of electronic relaxation in ultracold gaseous molecules: Optical–optical double resonance probe of the forbidden T1→S0 intersystem crossing in jet-cooled thiophosgene, Cl2CS
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.1290467
Reference9 articles.
1. Nonradiative electronic relaxation under collision-free conditions
2. Photophysics of collision-free thiophosgene: Confirmation of the role of the promoting mode in radiationless transitions
3. The cavity ringdown spectrum of the visible electronic system of thiophosgene: An estimation of the lifetime of the T1(ã 3A2) triplet state
4. A vibronic analysis of the , electronic transition in thiophosgene
5. Optical–optical double resonance study of the and &([a-z]+);(3A2) states of thiophosgene
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1. Rotational level involvement in the T1→S0 intersystem crossing transition in thiophosgene;The Journal of Chemical Physics;2009-04-07
2. Assessment of long-range corrected functionals performance for n→π* transitions in organic dyes;The Journal of Chemical Physics;2007-09-07
3. Ab Initio Investigation of the n → π* Transitions in Thiocarbonyl Dyes;The Journal of Physical Chemistry A;2006-07-01
4. An optical-optical double resonance probe of the lowest triplet state of jet-cooled thiophosgene: Rovibronic structures and electronic relaxation;The Journal of Chemical Physics;2006-03-28
5. Striving To Understand the Photophysics and Photochemistry of Thiophosgene: A Combined CASSCF and MR−CI Study;The Journal of Physical Chemistry A;2005-01-06
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