Publication | Open Access
Structural properties of self-organized semiconductor nanostructures
791
Citations
388
References
2004
Year
EngineeringSemiconductor NanostructuresSemiconductorsNanoelectronicsMolecular Beam EpitaxyEpitaxial GrowthCompound SemiconductorMaterials ScienceStructural PropertiesPhysicsNanotechnologyOptoelectronic MaterialsStrain DistributionSemiconductor MaterialStrain FieldsSemiconductor Heterostructure GrowthSelf-assemblyApplied PhysicsMultilayer HeterostructuresNanostructures
Instabilities in semiconductor heterostructure growth can be exploited for the self-organized formation of nanostructures, allowing for carrier confinement in all three spatial dimensions. Beside the description of various growth modes, the experimental characterization of structural properties, such as size and shape, chemical composition, and strain distribution is presented. The authors discuss the calculation of strain fields, which play an important role in the formation of such nanostructures and also influence their structural and optoelectronic properties. Several specific materials systems are surveyed together with important applications.
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