"S-shaped" temperature-dependent emission shift and carrier dynamics in InGaN/GaN multiple quantum wells

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We report temperature-dependent time-integrated and time-resolved photoluminescence (PL) studies of InGaN/GaN multiple quantum wells (MQWs) grown by metalorganic chemical vapor deposition. We observed anomalous emission behavior, specifically an S-shaped (decrease-increase-decrease) temperature dependence of the peak energy (E-p) for InGaN-related PL with increasing temperature: E-p redshifts in the temperature range of 10-70 It, blueshifts for 70-150 K, and redshifts again for 150-300 K with increasing temperature. In addition, when E-p redshifts, the spectral width is observed to narrow, while when E-p blueshifts, it broadens. From a study of the integrated PL intensity as a function of temperature, it is found that thermionic emission of photocarriers out of local potential minima into higher energy states within the wells is the dominant mechanism leading to the thermal quenching of the InGaN-related PI,. We demonstrate that the temperature-induced S-shaped PL shift is caused by a change in the carrier dynamics with increasing temperature due to inhomogeneity and carrier localization in the InGaN/GaN MQWs. (C) 1998 American Institute of Physics. [S0003-6951(95)00736-0].
Publisher
AMER INST PHYSICS
Issue Date
1998-09
Language
English
Article Type
Article
Keywords

CHEMICAL-VAPOR-DEPOSITION; RADIATIVE RECOMBINATION; LOCALIZED EXCITONS; TRANSITIONS; LIFETIMES; SINGLE; GAN

Citation

APPLIED PHYSICS LETTERS, v.73, no.10, pp.1370 - 1372

ISSN
0003-6951
DOI
10.1063/1.122164
URI
http://hdl.handle.net/10203/76016
Appears in Collection
PH-Journal Papers(저널논문)
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