Optimum crystal parameters for room-temperature Cr4+:forsterite lasers: experiment and theory
Author:
Publisher
Elsevier BV
Subject
Electrical and Electronic Engineering,Physical and Theoretical Chemistry,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials
Reference10 articles.
1. Efficient radiatively cooled Cr4+:forsterite lasers at room temperature;Sennaroglu;Appl. Opt.,1998
2. Experimental and numerical investigation of thermal effects in end-pumped Cr4+:forsterite lasers near room temperature;Sennaroglu;IEEE J. Quantum Electron.,1998
3. Determination of the optimum absorption coefficient in Cr4+:forsterite lasers under thermal loading;Sennaroglu;Opt. Lett.,1998
4. A.W. Snyder, J.D. Love, Optical Waveguide Theory, Chapman and Hall, New York, 1983 (Chapter 20).
5. Continuous-wave laser operation of chromium-doped forsterite;Petricevic;Opt. Lett.,1989
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2. Tunable and mode-locked laser action of Cr4+in codoped forsterite Cr, Sc:Mg2SiO4;Laser Physics;2017-12-21
3. Evolution of Cr 4+ , Cr 3+ and Cr 2+ contents in Cr:Mg 2 SiO 4 single crystals during their prolonged high-temperature oxidizing annealing;Journal of Crystal Growth;2017-06
4. Broadly tunable Cr4+-doped solid-state lasers in the near infrared and visible;Progress in Quantum Electronics;2002-11
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