Abstract
By controlling stoichiometry via a hybrid molecular beam epitaxy approach, we report on the study of thin film growth and the electronic transport properties of phase-pure, epitaxial NdTiO3/SrTiO3 heterostructures grown on (001) (La0.3Sr0.7)(Al 0.65Ta0.35)O3 (LSAT) substrates as a function of cation stoichiometry in NdTiO3. Despite the symmetry mismatch between bulk NdTiO3 and the substrate, NdTiO3 films grew in an atomic layer-by-layer fashion over a range of cation stoichiometry; however amorphous films resulted in cases of extreme cation non-stoichiometry. Temperature-dependent sheet resistance measurements were consistent with Fermi-liquid metallic behavior over a wide temperature range, but revealed a remarkable crossover from metal-to-insulator (M-I) type behavior at low temperatures for all compositions. A direct correlation between cation stoichiometry, transport behavior, and the temperature of M-I transition is established. © 2014 AIP Publishing LLC.
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CITATION STYLE
Xu, P., Phelan, D., Seok Jeong, J., Andre Mkhoyan, K., & Jalan, B. (2014). Stoichiometry-driven metal-to-insulator transition in NdTiO 3/SrTiO3 heterostructures. Applied Physics Letters, 104(8). https://doi.org/10.1063/1.4866867
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