Hyperfine Structure of theState of CN
- 14 December 1964
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 136 (6A) , A1571-A1575
- https://doi.org/10.1103/physrev.136.a1571
Abstract
Hyperfine-structure energy formulas are developed for states of diatomic molecules and are used to analyze some of the results of the microwave-optical experiment on the CN molecule described in the preceding paper. For the excited state the following hyperfine structure constants are derived: , , and MHz. These results are found to be consistent with the valence bond structure: C ≐ N:, in which the unpaired electron occupies the -bond orbital of the molecule.
This publication has 14 references indexed in Scilit:
- Optical Detection of Microwave Transitions Between Excited Electronic States of CN and the Identification of the Transitions InvolvedPhysical Review B, 1964
- Optical Detection of Microwave Transitions in Electronically Excited CN Produced by a Chemical ReactionPhysical Review Letters, 1962
- Rotational Perturbations in CN. Zero-Field Theory, Optical Zeeman Effect, and Microwave Transition ProbabilitiesPhysical Review B, 1962
- Perturbations and rotational intensities observed in CN bands emitted by reactions of organic molecules with nitrogen atomsJournal of Molecular Spectroscopy, 1961
- Uncoupling Effects in the Microwave Spectrum of Nitric OxidePhysical Review B, 1956
- Microwave Spectra of the Free Radicals OH and ODPhysical Review B, 1955
- Magnetic Hyperfine Structure in Diatomic MoleculesPhysical Review B, 1952
- On the Nuclear Magnetic Moments of Several Stable IsotopesPhysical Review B, 1951
- On the Magnetic Moments of , , , , andPhysical Review B, 1950
- Calculation of Nuclear Quadrupole Effects in MoleculesPhysical Review B, 1948