Condition for no thermal runaway in cw semiconductor lasers
Author:
Publisher
AIP Publishing
Subject
General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.355139
Reference8 articles.
1. Catastrophic damage of AlxGa1−xAs double‐heterostructure laser material
2. The effect of sputtered-SiO<inf>2</inf>facet coating films on the suppression of self-sustained pulsations in the output of (GaAl)As double-heterostructure lasers during CW operation
3. Long‐term degradation of GaAs‐Ga1−xAlxAs DH lasers due to facet erosion
4. Temperature distribution along the striped active region in high‐power GaAlAs visible lasers
5. Thermal conductivity of Ga1−xAlxAs alloys
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1. Thermomechanical issues of high power laser diode catastrophic optical damage;Journal of Physics D: Applied Physics;2019-06-24
2. Control of thermal runaway—some mathematical insights;International Journal of Heat and Mass Transfer;1998-10
3. Dynamics of the optical damage of output mirrors of ridge semiconductor lasers based on strained quantum-well heterostructures;Quantum Electronics;1998-07-31
4. Self-consistent calculation of facet heating in asymmetrically coated edge emitting diode lasers;Semiconductor Science and Technology;1998-03-01
5. Material and fabrication-related limitations to high-power operation of GaAs/AlGaAs and InGaAs/AlGaAs laser diodes;Materials Science and Engineering: B;1997-02
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