Spectroscopy of K2 Using Laser-Induced Fluorescence
- 15 November 1968
- journal article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 49 (10) , 4264-4268
- https://doi.org/10.1063/1.1669869
Abstract
When potassium vapor contained in a cell of aluminosilicate glass at 300°C is irradiated with the 6328‐Å line of the He–Ne laser, several fluorescence series are excited which originate from the state of the 39K2 molecule. Analysis of the fluorescence allows the spectroscopic constants (cm−1) of the ground state as measured by Loomis and Nusbaum to be corrected, giving The laser line is found to coincide with several molecular transitions. Three of these were determined from analysis of the spectrum to be , and . Radiation from K atoms accompanying K2 excitation is also observed. It is proposed that the mechanism primarily responsible for the atomic potassium emission is the excitation transfer reaction K2*+K → K2 + K*, leaving the K2 molecule vibrationally excited.
Keywords
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