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- W2006055962 abstract "Temperature characteristics of tensile strained GaAs1−yPy–Al0.35Ga0.65As single quantum well heterostructure laser diodes are examined. The dependence of the characteristic temperature (T0) on the quantum well composition is systematically studied in broad-area stripe lasers with identical quantum well widths (115 Å) and various cavity lengths. Laser diodes with 10 quantum well compositions ranging from y=0 (lattice matched) to 0.30 (∼1.1% tensile strain) and 5 cavity lengths ranging from 300 to 1500 μm are examined. Characteristic temperatures are found to be maximized for small (but generally nonzero) quantum well phosphorus compositions, with a maximum value of T0=159 K obtained for y=0.025, but decrease rapidly with increasing composition. Our results are analyzed via a theoretical model for the characteristic temperature of the transparency current in separate confinement quantum well lasers and comparison of our observations with other measured laser characteristics. These analyses suggest that the observed local maximum in T0(y) at small y is a tensile strain effect, whereas the decreased T0(y) at large y results primarily from loss of carrier confinement and barrier recombination." @default.
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- W2006055962 date "2000-11-01" @default.
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- W2006055962 title "Characteristic temperature study of GaAsP–AlGaAs tensile strained quantum well lasers" @default.
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- W2006055962 doi "https://doi.org/10.1063/1.1314901" @default.
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