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Sympetalous defects in metalorganic vapor phase epitaxy (MOVPE)-grown homoepitaxial β-Ga2O3 films

Jacqueline Cooke, Praneeth Ranga, Arkka Bhattacharyya, Xueling Cheng, Yunshan Wang, Sriram Krishnamoorthy, Michael A. Scarpulla, Berardi Sensale‐Rodriguez

2022Journal of Vacuum Science & Technology A Vacuum Surfaces and Films20 citationsDOI

Abstract

We report a new type of structural defect in β-Ga2O3 homoepitaxial thin films grown by metalorganic vapor phase epitaxy, which we have dubbed as “sympetalous defects.” These consist of a line defect (for example, a nanotube defect) in the underlying substrate combined with a multi-faceted inverted polycrystalline pyramid in the epitaxial film, which may also be decorated with twinned polycrystalline grains. In plan-view atomic force, scanning electron, or optical microscopies, the sympetalous defects appear similar in shape to polygonal etch pits observed for single crystals. Photoluminescence microscopy exposed spots of polarization-dependent luminescence at these defects, different from the single crystal films' luminescence. Furthermore, some of the defects exhibited circular dichroism in their luminescence that we correlated with partial helices formed within the pits by the arrangement of linearly dichroic polycrystalline grains. Finally, the density of sympetalous defects agrees with the etch pit densities of the substrates. Understanding and controlling these defects will be of importance as they modify the local properties of films, affect fabricated device yields, and influence characterization experiments.

Topics & Concepts

Materials scienceEpitaxyPhotoluminescenceCrystalliteLuminescenceOptoelectronicsCathodoluminescenceCrystallographyMetalorganic vapour phase epitaxyThin filmSubstrate (aquarium)NanotechnologyChemistryMetallurgyGeologyOceanographyLayer (electronics)Ga2O3 and related materialsZnO doping and propertiesAdvanced Photocatalysis Techniques
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