Tunable alexandrite lasers: Development and performance
- 1 October 1985
- journal article
- Published by Institute of Electrical and Electronics Engineers (IEEE) in IEEE Journal of Quantum Electronics
- Vol. 21 (10), 1568-1581
- https://doi.org/10.1109/jqe.1985.1072544
Abstract
Some major recent developments in alexandrite laser research are reviewed. Emphasis is placed on key material characteristics, and their relationship to laser performance. Alexandrite's favorable thermomechanical properties and high capacity for energy storage have led to laser performance levels that, in certain areas, exceed those of established solid-state laser sources. Here we review performance achievements for a variety of pulsed and CW laser configurations including single-mode, multimode, and mode-locked resonators, high-power amplifiers, and zig-zag slabs. In these configurations, operating performance levels have been demonstrated that are comparable to those of older, more familiar solid-state laser technologies. Alexandrite's broad tunability offers additional advantages. Together with nonlinear frequency conversion processes, alexandrite lasers provide high-brightness output over most of the UV, visible, and near IR.Keywords
This publication has 26 references indexed in Scilit:
- Temperature dependence of the excited- state absorption of alexandriteIEEE Journal of Quantum Electronics, 1983
- Alexandrite-laser performance at high temperatureOptics Letters, 1982
- Generation of 0.7–0.8μpicosecond pulses in an alexandrite laser with passive mode lockingSoviet Journal of Quantum Electronics, 1982
- Tunable CW alexandrite laserIEEE Journal of Quantum Electronics, 1980
- Stimulated emission from alexandrite (BeAl2O4:Cr3+)Soviet Journal of Quantum Electronics, 1978
- Temperature dependences ofradiative and nonradiative transitions in ruby and emeraldPhysical Review B, 1975
- Phonon-Terminated Optical MasersPhysical Review B, 1966
- Einstein Relations Connecting Broadband Emission and Absorption SpectraPhysical Review B, 1964
- Theory of Phonon-Terminated Optical MasersPhysical Review B, 1964
- Optical Maser Oscillation fromin MgInvolving Simultaneous Emission of PhononsPhysical Review Letters, 1963