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◆ Applied Physics Letters2026-03-02· Epitaxy

Structural and electrical characterization of homoepitaxial (1¯02) <b> <i>β</i> </b> -Ga2O3 layers grown by halide vapor phase epitaxy using synchrotron x-ray topography and emission microscopy

Sayleap Sdoeung, Kohei Sasaki, Chia-Hung Lin, Mohan Rajesh, Sho Hasegawa, Badari Narayana Rao, Akito Kuramata

原始摘要(英文原文)· Original abstract
This study demonstrates that (1¯02) β-Ga2O3 is a promising candidate for homoepitaxial growth via halide vapor phase epitaxy. Synchrotron x-ray rocking curve measurements confirmed a uniform full-width at half-maximum of approximately 16 arc sec across the wafer for both the substrate and the epitaxial layer. A donor concentration in the range from 7 × 1015 to 1 × 1016 cm−3 was confirmed by capacitance–voltage measurements of the Schottky barrier diodes (SBDs). Among the 35 SBDs, 32 exhibited a leakage current density lower than the detection limit under a reverse bias of −300 V, resulting in a high yield of approximately 91%. Synchrotron x-ray topography observation further identified that residual polycrystalline defects within the epitaxial film, which persist even after chemical mechanical polishing, were responsible for the reverse leakage current of the SBDs.
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Structural and electrical characterization of homoepitaxial (1¯02) <b> <i>β</i> </b> -Ga2O3 layers grown by halide vapor phase epitaxy using synchrotron x-ray topography and emission microscopy — 科研速览 Science Skim