DocumentCode
1056037
Title
Electronic- and phonon-terminated laser emission from Ho3+in BaY2 F8
Author
Johnson, L.F. ; Guggenheim, H.J.
Author_Institution
Bell Laboratories, Murray Hill, NJ, USA
Volume
10
Issue
4
fYear
1974
fDate
4/1/1974 12:00:00 AM
Firstpage
442
Lastpage
449
Abstract
Infrared spontaneous and stimulated emission from Ho3+in BaY2 F8 is reported. In addition to the familiar5
5I8 transition at 2 μ,5
5I5 emission at 2.4μ and5
5I7 emission at 2.9μ are discussed. There are several unusual features of the 2-μ laser emission. At room temperature, phonon-terminated laser emission is observed at 2.171 μ. At 77 K a complex CW laser output is observed in a wavelength interval lying on the shoulder of a fluorescence line. The complex output is attributed to oscillation in transverse modes of the resonator. Oscillation is not observed in the strongest emission line, despite a large terminal state splitting of 310 cm-1. These results are explained on the basis of a theory developed earlier for transition metal ion lasers. The validity of the model is supported by demonstrating the tunability through loss modulation predicted by theory. The observation of these effects is made possible by the very low internal scattering loss in the crystals. The5
5I5 laser lines near 2.4 μ represent relatively low gain transitions with pulse durations limited by accumulation in a longer lived terminal state. The dynamics of laser emission indicate the possible absence of thermal equilibrium in the excited state. For the 2.9-μ transition the bottleneck posed by a longer lived terminal state may be eliminated by the addition of Eu3+or Pr3+, but laser emission could not be obtained.
5I
5I
5I
5IKeywords
Crystals; Fluorescence; Laser modes; Laser theory; Laser transitions; Optical pulses; Predictive models; Scattering; Stimulated emission; Temperature;
fLanguage
English
Journal_Title
Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
0018-9197
Type
jour
DOI
10.1109/JQE.1974.1068158
Filename
1068158
Link To Document