Applied Physics Letters · 2001 · 123 citations · 21 references
Wide-bandgap SemiconductorEngineeringGrowth StoichiometryElectrical ActivityGan FilmsNanoelectronicsMolecular Beam EpitaxyEpitaxial GrowthExcess GaMaterials ScienceMaterials EngineeringElectrical EngineeringAluminum Gallium NitrideMicroelectronicsGa/n RatioCategoryiii-v SemiconductorDislocation InteractionApplied PhysicsGan Power Device
The impact of the Ga/N ratio on the structure and electrical activity of threading dislocations in GaN films grown by molecular-beam epitaxy is reported. Electrical measurements performed on samples grown under Ga-rich conditions show three orders of magnitude higher reverse bias leakage compared with those grown under Ga-lean conditions. Transmission electron microscopy (TEM) studies reveal excess Ga at the surface termination of pure screw dislocations accompanied by a change in the screw dislocation core structure in Ga-rich films. The correlation of transport and TEM results indicates that dislocation electrical activity depends sensitively on dislocation type and growth stoichiometry.
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O. Ambacher, J. Smart, J. R. Shealy et al. · Journal of Applied Physics · 1999 · 2.9K citations
Wide-bandgap Semiconductor, Piezoelectric Polarization Charges, Carrier Concentration Profiles +16
I. P. Smorchkova, C. R. Elsass, J. P. Ibbetson et al. · Journal of Applied Physics · 1999 · 433 citations
Semiconductors, Wide-bandgap Semiconductor, Electrical Engineering +14
Dislocation mediated surface morphology of GaN
B. Heying, E. J. Tarsa, C. R. Elsass et al. · Journal of Applied Physics · 1999 · 400 citations
Materials Engineering, Materials Science, Epitaxial Growth +13