The R' Center in LiF: An Optical Study of a Jahn-Teller Distorted System [Thesis]
Thesis/Dissertation
·
OSTI ID:4164779
- Cornell Univ., Ithaca, NY (United States)
A series of experiments are described in which the optical absorption and emission spectra of the R' center in LiF at low temperatures are perturbed by applied electric, magnetic, and uniaxial stress fields to determine the structure of the center and the effects of Jahn-Teller distortion in its excited state. The magnetic circular dichroism and linear Stark splitting observed for the 8328 Å zero-phonon line confirm that the R' center has C3v symmetry and that this transition is 3A2 → 3E, as expected for the model of a triangle of three F centers with one extra trapped electron. The R' center undergoes dynamic Jahn-Teller distortion in the 3E excited state, as proposed by Fetterman. This is revealed experimentally in the characteristic double-peaked band shape of the R' absorption, the polarization of the R' emission under uniaxial stress, and the strongly-reduced orbital Zeeman effect. These effects are analyzed quantitatively in terms of the well-known LHOPS model for the linear Jahn-Teller effect in an X3 molecule and are all consistent with the choice of model parameters k2 = 5 for the strength of the interaction, and $$\hslash$$ω = 0.049 eV for the frequency of the mode responsible for the distortion. Other predictions of the model based on these parameters, such as the linearity of the Stark and Stress splitting of the zero-phonon line in absorption are qualitatively confirmed. No evidence of "warping" effects due to higher order terms in the Jahn-Teller coupling is observed.
- Research Organization:
- Cornell Univ., Ithaca, NY (United States). Materials Science Center
- Sponsoring Organization:
- US Atomic Energy Commission (AEC); Advanced Research Projects Agency
- NSA Number:
- NSA-24-024949
- OSTI ID:
- 4164779
- Report Number(s):
- NYO--3464-21; 1238
- Country of Publication:
- United States
- Language:
- English
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