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arxiv: 0903.0225 · v2 · pith:A6B7YT4Fnew · submitted 2009-03-02 · ❄️ cond-mat.str-el

Fundamental thickness limit of itinerant ferromagnetic SrRuO₃ thin films

classification ❄️ cond-mat.str-el
keywords decreasesrruothicknessconfinementferromagneticfilmsfundamentalitinerant
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We report on a fundamental thickness limit of the itinerant ferromagnetic oxide SrRuO$_3$ that might arise from the orbital-selective quantum confinement effects. Experimentally, SrRuO$_3$ films remain metallic even for a thickness of 2 unit cells (uc), but the Curie temperature, T$_C$, starts to decrease at 4 uc and becomes zero at 2 uc. Using the Stoner model, we attributed the T$_C$ decrease to a decrease in the density of states (N$_o$). Namely, in the thin film geometry, the hybridized Ru-d$_yz,zx$ orbitals are terminated by top and bottom interfaces, resulting in quantum confinement and reduction of N$_o$.

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