Br*+CO2 revisited: An interrogation of E–V energy transfer with time‐resolved diode laser spectroscopy
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.458866
Reference37 articles.
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2. Electronically excited bromine atoms Br(42P½). Part 2.—Spin orbit relaxation
3. Collisional deactivation of Br(4 2P1/2) by hydrogen isotopes
4. Electronic-to-vibrational energy transfer reactions.X* + CO (X = O, I and Br)
5. Infrared fluorescence studies of near-resonant electronic-to-vibrational energy-transfer collisions: atomic bromine(42P1/2) + nitric oxide
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1. Vacuum UV laser-induced fluorescence study of the collisional removal of Br(2P1/2) atoms by small molecules;Chemical Physics Letters;2008-09
2. Chemical Properties of Electronically Excited Halogen Atoms X(2P1/2) (X=F,Cl,Br,I);Journal of Physical and Chemical Reference Data;2006-06
3. Characterization of a Br( 2 P 1/2 )-CO 2 (10 0 1-10 0 0) transfer laser driven by photolysis of iodine monobromide;Applied Physics B: Lasers and Optics;1998-04-01
4. Spin–orbit relaxation kinetics of Br(4 2P1/2);The Journal of Chemical Physics;1996-05-08
5. Line-Tunable Electronic-to-Vibrational Energy Transfer Lasers in the Mid-Infrared;Laser in der Umweltmeßtechnik / Laser in Remote Sensing;1994
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