Publication | Open Access
Radial Growth of Self-Catalyzed GaAs Nanowires and the Evolution of the Liquid Ga-Droplet Studied by Time-Resolved in Situ X-ray Diffraction
22
Citations
51
References
2017
Year
Materials ScienceEngineeringPhysicsNanotechnologyNanoelectronicsRadial GrowthApplied PhysicsCrystal Growth TechnologySitu X-ray DiffractionSelf-catalyzed Gaas NanowiresNanowire RadiusGrowth StudyNanostructure SynthesisMolecular Beam EpitaxyNanoscale ScienceEpitaxial GrowthSemiconductor Nanostructures
We report on a growth study of self-catalyzed GaAs nanowires based on time-resolved in situ X-ray structure characterization during molecular-beam-epitaxy in combination with ex situ scanning-electron-microscopy. We reveal the evolution of nanowire radius and polytypism and distinguish radial growth processes responsible for tapering and side-wall growth. We interpret our results using a model for diameter self-stabilization processes during growth of self-catalyzed GaAs nanowires including the shape of the liquid Ga-droplet and its evolution during growth.
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