Journal of Physics D Applied Physics · 2010 · 85 citations · 42 references
Wide-bandgap SemiconductorEngineeringSemiconductor NanostructuresHigh DensityNanoelectronicsQuantum MaterialsCompound SemiconductorElectrical EngineeringPhysicsQuantum DeviceIngan Quantum WellsAluminum Gallium NitrideCategoryiii-v SemiconductorStartling SuccessApplied PhysicsCondensed Matter PhysicsGan Power DeviceOptoelectronicsLocalization Sites
The startling success of GaN-based light emitting diodes despite the high density of dislocations found in typical heteroepitaxial material has been attributed to localization of carriers at non-uniformities in the quantum wells (QWs) which form the active region of such devices. Here, we review the different possible structures within the QWs which could act as localization sites, at length scales ranging from the atomic to the tens of nanometre range. In some QWs several localization mechanisms could be operational, but the challenge remains to optimize the QWs' structure to achieve improved quantum efficiencies, particularly at high excitation powers.
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InGaN-Based Multi-Quantum-Well-Structure Laser Diodes
Shuji Nakamura, Masayuki Senoh, Shin‐ichi Nagahama et al. · Japanese Journal of Applied Physics · 1996 · 2.5K citations
Unusual properties of the fundamental band gap of InN
Junqiao Wu, W. Walukiewicz, K. M. Yu et al. · Applied Physics Letters · 2002 · 1.5K citations · Full text
Materials Science, Ii-vi Semiconductor, Wurtzite-structured Inn Grown +15