Near-resonant energy transfer from highly vibrationally excited OH to N2
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.2884343
Reference24 articles.
1. Critical Survey of Data on the Spectroscopy and Kinetics of Ozone in the Mesosphere and Thermosphere
2. Evidence for an OH≠υυ→ N2≠υυ→ CO2(ν3) → CO2+hν(4.3µm) Mechanism for 4.3-µm Airglow
3. Energy Transfer in Near‐Resonant Molecular Collisions due to Long‐Range Forces with Application to Transfer of Vibrational Energy from ν3 Mode of CO2 to N2
4. Evidence for an OH(υ) excitation mechanism of CO24.3 μm nighttime emission from SABER/TIMED measurements
5. Deactivation of Vibrationally Excited Carbon Dioxide (ν3) by Collisions with Carbon Dioxide or with Nitrogen
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2. Model results of OH airglow considering four different wavelength regions to derive night-time atomic oxygen and atomic hydrogen in the mesopause region;Atmospheric Chemistry and Physics;2019-02-12
3. A new mechanism for OH vibrational relaxation leading to enhanced CO 2 emissions in the nocturnal mesosphere;Geophysical Research Letters;2015-06-03
4. Technical Note: On the possibly missing mechanism of 15 μm emission in the mesosphere–lower thermosphere (MLT);Atmospheric Chemistry and Physics;2015-02-17
5. Technical Note: A new mechanism of 15 μm emission in the mesosphere-lower thermosphere (MLT);2014-10-01
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