Nano Letters · 2011 · 274 citations · 39 references
SemiconductorsElectrical EngineeringElectronic DevicesEngineeringSolid-state LightingOptoelectronic MaterialsApplied PhysicsAluminum Gallium NitrideGan Power DeviceLight-emitting DiodesStrain-free Gan NanowiresOptoelectronic DevicesMolecular Beam EpitaxyP-type Modulation DopingOptoelectronicsCategoryiii-v SemiconductorCompound Semiconductor
Full-color, catalyst-free InGaN/GaN dot-in-a-wire light-emitting diodes (LEDs) were monolithically grown on Si(111) by molecular beam epitaxy, with the emission characteristics controlled by the dot properties in a single epitaxial growth step. With the use of p-type modulation doping in the dot-in-a-wire heterostructures, we have demonstrated the most efficient phosphor-free white LEDs ever reported, which exhibit an internal quantum efficiency of ∼56.8%, nearly unaltered CIE chromaticity coordinates with increasing injection current, and virtually zero efficiency droop at current densities up to ∼640 A/cm(2). The remarkable performance is attributed to the superior three-dimensional carrier confinement provided by the electronically coupled dot-in-a-wire heterostructures, the nearly defect- and strain-free GaN nanowires, and the significantly enhanced hole transport due to the p-type modulation doping.
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Origin of efficiency droop in GaN-based light-emitting diodes
Minho Kim, M. Schubert, Qi Dai et al. · Applied Physics Letters · 2007 · 1.3K citations · Full text
Auger recombination in InGaN measured by photoluminescence
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Gallium Nitride-Based Nanowire Radial Heterostructures for Nanophotonics
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Materials Science, Electrical Engineering, Solid-state Lighting +14