DocumentCode
1060279
Title
Characteristics of room-temperature 2.3-µm laser emission from tm3+in YAG and YAlO3
Author
Caird, John A. ; DeShazer, Larry G. ; Nella, John
Author_Institution
University of Southern California, Los Angeles, CA, USA and Hughes Aircraft Company, Culver City, CA, USA
Volume
11
Issue
11
fYear
1975
fDate
11/1/1975 12:00:00 AM
Firstpage
874
Lastpage
881
Abstract
The relaxation of low-lying excited states of Tm3+ions doped in YAG, YAlO3 , and Y2 O3 due to photon and phonon emission is studied theoretically. Stimulated emission cross sections (integrated over frequency), fluorescence lifetimes, and radiative quantum efficiencies are calculated and their implications for laser operation on the 2.3-μm3F4 →3H5 line of Tm3+are discussed. The calculations, based on a few phenomenological parameters which have been determined by others, are easily generalizable to other host materials and other rare-earth (RE) ions. Room-temperature pulsed laser emission from Tm3+ions near 2.3 μm was observed on one line in Tm:Cr:YAG, and on four lines in Tm:Cr:YAlO3 . Lower oscillation thresholds were generally obtained in the YAlO3 rods, consistent with the theory presented. A threshold of 31 J was obtained with a Tm:Cr:YAlO3 rod at 2.274 μm. In the free-running pulsed mode, peak power levels up to several hundred watts and total output energies up to 12 mJ/pulse were observed. Other general, observed operating characteristics are discussed.
Keywords
Chromium; Dielectrics; Electromagnetic fields; Energy states; Fluorescence; Laser theory; Laser transitions; Optical pulses; Polarization; Spontaneous emission;
fLanguage
English
Journal_Title
Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
0018-9197
Type
jour
DOI
10.1109/JQE.1975.1068541
Filename
1068541
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