paper

Employing High-temperature-grown SrZrO Buffer to Enhance the Electron Mobility in La:BaSnO-based Heterostructures

arXiv:2302.12323 · doi:10.1063/5.0148467

Abstract

We report a synthetic route to achieve high electron mobility at room temperature in epitaxial La:BaSnO/SrZrO heterostructures prepared on several oxide substrates. Room-temperature mobilities of 157, 145, and 143 cmVs are achieved for heterostructures grown on DyScO (110), MgO (001), and TbScO (110) crystalline substrates, respectively. This is realized by first employing pulsed laser deposition to grow at very high temperature the SrZrO buffer layer to reduce dislocation density in the active layer, then followed by the epitaxial growth of an overlaying La:BaSnO active layer by molecular-beam epitaxy. Structural properties of these heterostructures are investigated, and the extracted upper limit of threading dislocations is well below cm for buffered films on DyScO, MgO, and TbScO substrates. The present results provide a promising route towards achieving high mobility in buffered La:BaSnO films prepared on most, if not all, oxide substrates with large compressive or tensile lattice mismatches to the film.

9 pages and 5 Figures in the Maintext. 3 pages and 3 Figures in the Supplementary Information

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