Lattice disorder, facet heating and catastrophic optical mirror damage of AlGaAs quantum well lasers
- 1 February 1993
- journal article
- Published by AIP Publishing in Applied Physics Letters
- Vol. 62 (5) , 455-457
- https://doi.org/10.1063/1.108931
Abstract
Raman microprobe spectra from dry-etched, coated (110) AlGaAs single quantum well laser mirrors show, apart from the allowed phonon modes, a series of symmetry forbidden modes whose strength is dependent on the mirror treatment prior to coating. A particularly strong mode at 193 cm−1 can be attributed to disorder activated longitudinal acoustic phonon scattering in addition to—and this is new—the Eg-mode of elemental arsenic. The existence of lattice disorder and arsenic clusters is confirmed by Rayleigh scattering and energy dispersive x-ray spectroscopy. The optical power level at catastrophic optical mirror damage and the local mirror temperatures of the biased laser are found to have a strong dependence on mirror disorder.Keywords
This publication has 11 references indexed in Scilit:
- Technique for lateral temperature profiling in optoelectronic devices using a photoluminescence microprobeApplied Physics Letters, 1992
- Local mirror temperatures of red-emitting (Al)GaInP quantum-well laser diodes by Raman scattering and reflectance modulation measurementsApplied Physics Letters, 1992
- Evidence for current-density-induced heating of AlGaAs single-quantum-well laser facetsApplied Physics Letters, 1991
- Thermodynamics of facet damage in cleaved AlGaAs lasersApplied Physics Letters, 1991
- Full-wafer technology-A new approach to large-scale laser fabrication and integrationIEEE Journal of Quantum Electronics, 1991
- Diode laser degradation mechanisms: A reviewProgress in Quantum Electronics, 1991
- Mapping of local temperatures on mirrors of GaAs/AlGaAs laser diodesApplied Physics Letters, 1990
- Raman investigation of anharmonicity and disorder-induced effects inepitaxial layersPhysical Review B, 1981
- Detection of excess crystalline As and Sb in III-V oxide interfaces by Raman scatteringApplied Physics Letters, 1977
- Disorder-Activated Acoustic Mode in Raman Spectrum ofPhysical Review Letters, 1972