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Magneto-Dielectric Properties of Epitaxial Ba(Fe0.5Sn0.5)O3−δ Thin Films on (001) SrTiO3 Substrates by Pulsed Laser Deposition

Ryoichi Shinoda, A. Iwase, T. Matsui

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Abstract

Epitaxial thin films of a novel magneto-dielectric perovskite compound, Ba(Fe0.5Sn0.5)O3−δ(BFSO), have been synthesized on (001) SrTiO3 single crystalline substrates. The BFSO thin films have ferromagnetic nature, with saturation magnetization of 34 emu/cc at 300 K. The origin of the ferromagnetic nature of BFSO is the superexchange coupling of Fe4+(d4)–O2−–Fe4+(d4). Electrical conduction in BFSO can be determined to be space charge limited type conduction, but the leakage current increased under high electric fields.

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Epitaxial thin films of a novel magneto-dielectric perovskite compound, Ba(Fe0.5Sn0.5)O3−δ(BFSO), have been synthesized on (001) SrTiO3 single crystalline substrates. The BFSO thin films have ferromagnetic nature, with saturation magnetization of 34 emu/cc at 300 K. The origin of the ferromagnetic nature of BFSO is the superexchange coupling of Fe4+(d4)–O2−–Fe4+(d4). Electrical conduction in BFSO can be determined to be space charge limited type conduction, but the leakage current increased under high electric fields.

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Available abstract

Epitaxial thin films of a novel magneto-dielectric perovskite compound, Ba(Fe0.5Sn0.5)O3−δ(BFSO), have been synthesized on (001) SrTiO3 single crystalline substrates. The BFSO thin films have ferromagnetic nature, with saturation magnetization of 34 emu/cc at 300 K. The origin of the ferromagnetic nature of BFSO is the superexchange coupling of Fe4+(d4)–O2−–Fe4+(d4). Electrical conduction in BFSO can be determined to be space charge limited type conduction, but the leakage current increased under high electric fields.

Key concepts: Superexchange, Materials science, Ferromagnetism, Dielectric, Condensed matter physics, Thermal conduction, Epitaxy, Magnetization

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