Applied Physics Letters · 1999 · 28 citations · 11 references
Materials ScienceGainp Spacer LayerPhotoluminescenceExciton EnergyEngineeringPhysicsNanomaterialsNanotechnologyApplied PhysicsQuantum DotsStacked LayersColloidal NanocrystalsNanoscale ScienceLuminescence PropertyNanocrystalline MaterialOptoelectronicsSemiconductor Nanostructures
We report magnetophotoluminescence measurements of stacked layers of self-assembled InP quantum dots. With a magnetic field applied in the growth direction we have determined the exciton reduced mass from the field dependence of the photoluminescence energy. By applying a magnetic field perpendicular to the growth direction, we have analyzed the spatial confinement of the dots in the growth direction. We observe a large increase in the shift of the exciton energy between 0 and 50 T when the thickness of the GaInP spacer layer between the dots is reduced from 8 to 4 nm. This indicates a decrease in spatial confinement in the growth direction which we attribute to strong electronic coupling between vertically stacked dots.
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Coupled Quantum Dots Fabricated by Cleaved Edge Overgrowth: From Artificial Atoms to Molecules
G. Schedelbeck, W. Wegscheider, M. Bichler et al. · Science · 1997 · 282 citations
Structural and optical properties of vertically aligned InP quantum dots
M. K. Zundel, P. Specht, K. Eberl et al. · Applied Physics Letters · 1997 · 143 citations