Applied Physics Letters · 2000 · 75 citations · 18 references
SemiconductorsPhotonicsElectrical EngineeringSolid-state LightingMolecular-beam EpitaxyEngineeringPhysicsIngan/gan Quantum WellsPhotoluminescenceApplied PhysicsAluminum Gallium NitrideGan Power DeviceCategoryiii-v SemiconductorOptoelectronicsCompound SemiconductorIngan/gan Single Qws
InGaN/GaN quantum wells (QWs) were grown by molecular-beam epitaxy on c-plane sapphire substrates. The growth of InGaN is carried out at 550 °C with a large V/III ratio to counteract the low efficiency of NH3 at that temperature and to promote the two-dimensional mode of growth. An In composition of 16%±2% was determined by high-resolution x-ray diffraction experiments. Room-temperature photoluminescence of InGaN/GaN single QWs can be obtained over the whole visible spectrum (from 0.4 to 0.66 μm) by varying the well thickness from 1 to 5 nm. These heterostructures exhibit very large Stokes shifts between the emission and the absorption edge energies.
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<i>Ellipsometry and Polarized Light</i>
R. M. A. Azzam, N. M. Bashara, Stanley S. Ballard · Physics Today · 1978 · 4.3K citations
Origin of Luminescence from InGaN Diodes
K.P. O’Donnell, Robert Martin, P. G. Middleton · Physical Review Letters · 1999 · 489 citations