Journal article

Effect of the interface morphology on the lateral electron transport in (001) GaP/Si heterostructures


Authors listOstheim, L.; Klar, P. J.; Moryson, Y.; Rohnke, M.; Beyer, A.; Volk, M.; Munde, M.; Stolz, W.; Volz, K.

Publication year2019

JournalJournal of Applied Physics

Volume number126

Issue number21

ISSN0021-8979

eISSN1089-7550

DOI Linkhttps://doi.org/10.1063/1.5124049

PublisherAmerican Institute of Physics


Abstract
We study the magnetotransport properties along the interface of various epitaxial (001) GaP/Si heterostructures of different interface morphologies. The samples are grown by metal-organic vapor-phase epitaxy exploring different approaches for optimizing the interface for device applications. We apply magnetic fields up to 10 T and temperatures between 1.5 and 300 K in the measurement. We alternate Ar-ion-beam etching for reducing the thickness of the GaP layer and transport measurements in order to distinguish transport paths in the bulk of the materials and at the interface. The transport behavior is correlated with structural properties obtained by secondary ion mass spectroscopy, atomic-force microscopy, and scanning transmission electron microscopy. We find a conducting path along the interface that correlates with the formation of antiphase boundaries at the interface. Published under license by AIP Publishing.



Citation Styles

Harvard Citation styleOstheim, L., Klar, P., Moryson, Y., Rohnke, M., Beyer, A., Volk, M., et al. (2019) Effect of the interface morphology on the lateral electron transport in (001) GaP/Si heterostructures, Journal of Applied Physics, 126(21), Article 215704. https://doi.org/10.1063/1.5124049

APA Citation styleOstheim, L., Klar, P., Moryson, Y., Rohnke, M., Beyer, A., Volk, M., Munde, M., Stolz, W., & Volz, K. (2019). Effect of the interface morphology on the lateral electron transport in (001) GaP/Si heterostructures. Journal of Applied Physics. 126(21), Article 215704. https://doi.org/10.1063/1.5124049



Keywords


BAND LINEUPSDEFORMATION POTENTIALSGALLIUM-PHOSPHIDEheterojunctionsOFFSETSSI

Last updated on 2025-02-04 at 00:53