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Approaches for high internal quantum efficiency green InGaN light-emitting diodes with large overlap quantum wells

Optics Express · 2011 · Vol. 19(S4) · pp. A991–A991
Hongping ZhaoGuangyu LiuJing ZhangJonathan D. PoplawskyVolkmar DierolfNelson Tansu

Abstract

Optimization of internal quantum efficiency (IQE) for InGaN quantum wells (QWs) light-emitting diodes (LEDs) is investigated. Staggered InGaN QWs with large electron-hole wavefunction overlap and improved radiative recombination rate are investigated for nitride LEDs application. The effect of interface abruptness in staggered InGaN QWs on radiative recombination rate is studied. Studies show that the less interface abruptness between the InGaN sub-layers will not affect the performance of the staggered InGaN QWs detrimentally. The growths of linearly-shaped staggered InGaN QWs by employing graded growth temperature grading are presented. The effect of current injection efficiency on IQE of InGaN QWs LEDs and other approaches to reduce dislocation in InGaN QWs LEDs are also discussed. The optimization of both radiative efficiency and current injection efficiency in InGaN QWs LEDs are required for achieving high IQE devices emitting in the green spectral regime and longer.

GaN-based semiconductor devices and materialsSemiconductor Quantum Structures and DevicesPhotocathodes and Microchannel PlatesLight-emitting diodeOptoelectronicsQuantum wellQuantum efficiencyMaterials scienceIndium gallium nitrideSpontaneous emissionDiodeNitrideCarrier generation and recombination
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References
Band parameters for nitrogen-containing semiconductors
Journal of Applied Physics · 2003 · 2,720 citations
Origin of efficiency droop in GaN-based light-emitting diodes
Applied Physics Letters · 2007 · 1,294 citations
AlGaN/GaN HEMTs-an overview of device operation and applications
Proceedings of the IEEE · 2002 · 2,181 citations
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