Tunable charge transport properties in non-stoichiometric SrIrO3 thin films

薄膜 材料科学 电荷(物理) 凝聚态物理 纳米技术 化学物理 化学 化学计量学 物理 物理化学 量子力学
作者
Sreya Suresh,Sai Pavan Prashanth Sadhu,Vikash Mishra,Werner Paulus,M. S. Ramachandra Rao
出处
期刊:Journal of Physics: Condensed Matter [IOP Publishing]
卷期号:36 (42): 425601-425601 被引量:3
标识
DOI:10.1088/1361-648x/ad6111
摘要

Abstract Delving into the intricate interplay between spin-orbit coupling and Coulomb correlations in strongly correlated oxides, particularly perovskite compounds, has unveiled a rich landscape of exotic phenomena ranging from unconventional superconductivity to the emergence of topological phases. In this study, we have employed pulsed laser deposition technique to grow SrIrO 3 (SIO) thin films on SrTiO 3 substrates, systematically varying the oxygen content during the post-deposition annealing. X-ray photoelectron spectroscopy (XPS) provided insights into the stoichiometry and spin-orbit splitting energy of Iridium within the SIO film, while high-resolution x-ray studies meticulously examined the structural integrity of the thin films. Remarkably, our findings indicate a decrease in the metallicity of SIO thin films with reduced annealing O 2 partial pressure. Furthermore, we carried out magneto-transport studies on the SIO thin films, the results revealed intriguing insights into spin transport as a function of oxygen content. The tunability of the electronic band structure of SIO films with varying oxygen vacancy is correlated with the density functional theory calculations. Our findings elucidate the intricate mechanisms dictating spin transport properties in SIO thin films, offering invaluable guidance for the design and optimization of spintronic devices based on complex oxide materials. Notably, the ability to tune bandwidth by varying post-annealing oxygen partial pressure in iridate-based spintronic materials holds significant promise for advancing technological applications in the spintronics domain.
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