Spin–rotation and hyperfine parameters for the (001) excited vibrational state of NO2 from infrared–radiofrequency double resonance
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.440144
Reference12 articles.
1. Microwave Spectrum of NO2: Fine Structure and Magnetic Coupling
2. Millimeter‐Wavelength Microwave Spectrum of Nitrogen Dioxide
3. Microwave spectrum of 14N 16O2 at 70 GHz
4. Laser Magnetic Resonance Spectra of 14NO2 and 15NO2 near 1600 cm−1
5. High-resolution infrared spectrum of the ν3 and ν2 + ν3 − ν2 bands of 14N16O2
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1. Hyperfine-resolved high-resolution laser spectroscopy of 14NO2 radical in the 15885 cm−1 energy region;Journal of Molecular Structure;2020-10
2. Hyperfine interaction constants of 14NO2 in 14 500–16 800 cm−1 energy region;The Journal of Chemical Physics;2017-10-28
3. Vibrational mode selectivity in hyperfine interactions: Polarization quantum beat spectroscopy of HCF(Ã1A″);The Journal of Chemical Physics;2004-01-15
4. On the energy dependence of the hyperfine interaction in excited states of NO2;The Journal of Chemical Physics;2001-11-15
5. Infrared nitrogen dioxide: Line parameters in the HITRAN database;Journal of Quantitative Spectroscopy and Radiative Transfer;1992-11
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