Trapping and Annihilation of Electrons and Positive Holes in KCl-TlCl
- 11 November 1966
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 151 (2) , 599-609
- https://doi.org/10.1103/physrev.151.599
Abstract
During irradiation at 77°K, and thallium atoms () are formed in KCl-TlCl crystals. On warming the irradiated crystals, two glow peaks are observed. The low-temperature glow peak at 208°K is caused by the diffusion of and the subsequent electron-hole annihilation involving nearby pairs of and . In addition to diffusing into the neighborhood of , a can diffuse into the neighborhood of a and become retrapped to form . The high-temperature glow peak at 300°K results when electrons are thermally released from thallium atoms into the conduction band and recombination of these electrons and takes place. Spectral analysis of the low-temperature glow peak shows that it consists of two emission bands with peaks at 410 and 298 nm while the high-temperature glow peak consists only of the 298-nm band. The processes which give rise to these emissions are discussed. The optical absorption of and has been measured. The absorption spectrum of consists of very weak bands at 1500 and 1260 nm, a strong band at 380 nm, and weak bands at 250, 300, and 640 nm. has strong absorption bands at 220, 262, 294, and 364 nm. The concentrations of and produced by irradiation were determined by measuring the decrease in height of the band of and thus determining the decrease in the concentration of . From the concentration of and and the optical-absorption spectra of these species it was possible to calculate the oscillator strengths of the , , and bands.
Keywords
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