Publication | Closed Access
Size-dependent electronic level structure of InAs nanocrystal quantum dots: Test of multiband effective mass theory
162
Citations
12
References
1998
Year
EngineeringColloidal NanocrystalsSix-band ModelSemiconductor NanostructuresSemiconductorsIi-vi SemiconductorQuantum DotsNanoscale ScienceMaterials ScienceQuantum Size LevelsNanoscale SystemPhysicsNanotechnologySize-selective SpectroscopySemiconductor MaterialNanocrystalline MaterialNanophysicsNanomaterialsCondensed Matter PhysicsApplied Physics
The size dependence of the electronic spectrum of InAs nanocrystals ranging in radius from 10–35 Å has been studied by size-selective spectroscopy. An eight-band effective mass theory of the quantum size levels has been developed which describes the observed absorption level structure and transition intensities very well down to smallest crystal size using bulk band parameters. This model generalizes the six-band model which works well in CdSe nanocrystals and should adequately describe most direct semiconductor nanocrystals with band edge at the Γ-point of the Brillouin zone.
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