Epitaxial BiFeO 3 Multiferroic Thin Film Heterostructures
Эпитаксиальные многоферроические тонкоплёночные гетероструктуры BiFeO3
2003-03-13
SCID: 54.1/48emw4xe
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Epitaxial BiFeO3 thin filmsenhanced spontaneous polarizationmonoclinic film structuremultiferroic heterostructuresthickness-dependent magnetism
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Abstract (AI)
Enhancement of polarization and related properties in heteroepitaxially constrained thin films of the ferroelectromagnet, BiFeO3, is reported. Structure analysis indicates that the crystal structure of film is monoclinic in contrast to bulk, which is rhombohedral. The films display a room-temperature spontaneous polarization (50 to 60 microcoulombs per square centimeter) almost an order of magnitude higher than that of the bulk (6.1 microcoulombs per square centimeter). The observed enhancement is corroborated by first-principles calculations and found to originate from a high sensitivity of the polarization to small changes in lattice parameters. The films also exhibit enhanced thickness-dependent magnetism compared with the bulk. These enhanced and combined functional responses in thin film form present an opportunity to create and implement thin film devices that actively couple the magnetic and ferroelectric order parameters.
Key Findings
1
Combined enhanced ferroelectric and magnetic responses in thin-film BiFeO3 enable opportunities for devices that actively couple magnetic and ferroelectric order parameters.
2
Epitaxially constrained BiFeO3 thin films have a monoclinic crystal structure, in contrast to the rhombohedral structure of bulk BiFeO3.
3
Films exhibit enhanced thickness-dependent magnetism compared with bulk BiFeO3.
4
First-principles calculations corroborate the observed polarization enhancement and attribute it to high sensitivity of polarization to small changes in lattice parameters.
5
Thin films show room-temperature spontaneous polarization of 50–60 μC/cm², nearly an order of magnitude larger than bulk (6.1 μC/cm²).
Research Object
Epitaxial BiFeO3 multiferroic thin film heterostructures
Research Subject
Enhancement of polarization and related thickness-dependent magnetic and coupled ferroelectric–magnetic functional responses due to heteroepitaxial strain and lattice-parameter–sensitive structural change (monoclinic film vs rhombohedral bulk)
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2003-03-13
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