Scinovex
article Open AccessTop 10% cited

Growth of GaN by ECR-assisted MBE

Physica B Condensed Matter · 1993 · Vol. 185(1-4) · pp. 36–49
T. D. MoustakasTing LeiR. J. Molnar

Abstract

High-quality GaN films have been grown on a variety of substrates by electron cyclotron resonance microwave plasma-assisted molecular beam epitaxy (ECR-MBE). The films were grown in two steps. First, a GaN-buffer was grown at low temperature and then the rest of the film was grown at higher temperatures. We found that this method of growth leads to a relatively small two-dimensional nucleation rate (∼20 nuclei/μm2 h) and high lateral growth rate (100 times faster than the vertical growth rate). This type of quasi-layer-by-layer growth results in a smooth surface morphology to within 100 Å. Growth on Si(1 0 0) leads to single-crystalline GaN films having the zinc-blende structure. Growth on Si(1 1 1) leads to GaN films having the wurtzitic structure with a large concentration of stacking faults. The crystallographic orientation and the surface morphology of GaN films on sapphire depends on the orientation of sapphire. To this date, the best films were grown on the basal plane of sapphire.

GaN-based semiconductor devices and materialsZnO doping and propertiesGa2O3 and related materialsSapphireMaterials scienceMolecular beam epitaxyElectron cyclotron resonanceNucleationGrowth rateEpitaxyLayer (electronics)CrystallographyOptoelectronics
Citations
236
FWCI
8.70
field-weighted impact
References
38
Percentile
99%
vs. same field & year
Citations per year
References
P-Type Conduction in Mg-Doped GaN Treated with Low-Energy Electron Beam Irradiation (LEEBI)
Japanese Journal of Applied Physics · 1989 · 1,936 citations
GaN Growth Using GaN Buffer Layer
Japanese Journal of Applied Physics · 1991 · 1,312 citations
THE PREPARATION AND PROPERTIES OF VAPOR-DEPOSITED SINGLE-CRYSTAL-LINE GaN
Applied Physics Letters · 1969 · 1,308 citations
X-Ray Diffraction
Medical Entomology and Zoology · 1968 · 5,686 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.