Applied Physics Letters · 2016 · 21 citations · 11 references
We report that epitaxial Sr2IrO4 thin-films can be selectively grown using pulsed laser deposition (PLD). Due to the competition between the Ruddlesden-Popper phases of strontium iridates (Srn+1IrnO3n+1), conventional PLD methods often result in mixed phases of Sr2IrO4 (n = 1), Sr3Ir2O7 (n = 2), and SrIrO3 (n = ∞). We have discovered that reduced PLD plume dimensions and slow deposition rates are the key for stabilizing pure Sr2IrO4 phase thin-films, identified by real-time in-situ monitoring of their optical spectra. The slow film deposition results in a thermodynamically stable TiO2\\SrO\IrO2\SrO\SrO configuration at an interface rather than TiO2\\SrO\SrO\IrO2\SrO between a TiO2-terminated SrTiO3 substrate and a Sr2IrO4 thin film, which is consistent with other layered oxides grown by molecular beam epitaxy. Our approach provides an effective method for using PLD to achieve pure phase thin-films of layered materials that are susceptible to several energetically competing phases.
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Ellipsometry and polarized light
R. M. A. Azzam, N. M. Bashara, D. Thorburn Burns · Analytica Chimica Acta · 1987 · 1.7K citations
Observation of a d-wave gap in electron-doped Sr2IrO4
Yeongkwan Kim, N. H. Sung, Jonathan D. Denlinger et al. · Nature Physics · 2015 · 290 citations · Full text
Dynamic layer rearrangement during growth of layered oxide films by molecular beam epitaxy
J. H. Lee, Guangfu Luo, I‐Cheng Tung et al. · Nature Materials · 2014 · 149 citations · Full text