First principles study of the multiferroics , , and : Structure, polarization, and magnetic ordering temperature
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Open Access
- 6 December 2005
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 72 (21), 214105
- https://doi.org/10.1103/physrevb.72.214105
Abstract
We present results of an ab initio density-functional theory study of three bismuth-based multiferroics, , , and . We disuss differences in the crystal and electronic structure of the three systems and show that the application of the method is essential to obtain realistic structural parameters for . We calculate the magnetic nearest-neighbor coupling constants for all three systems and show how Anderson’s theory of superexchange can be applied to explain the signs and relative magnitudes of these coupling constants. From the coupling constants we then obtain a mean-field approximation for the magnetic ordering temperatures. Guided by our comparison of these three systems, we discuss the possibilities for designing a multiferroic material with large magnetization above room temperature.
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This publication has 38 references indexed in Scilit:
- Theoretical Prediction of New High-Performance Lead-Free PiezoelectricsChemistry of Materials, 2005
- Weak ferromagnetism and magnetoelectric coupling in bismuth ferritePhysical Review B, 2005
- First-principles study of spontaneous polarization in multiferroicPhysical Review B, 2005
- Destruction of spin cycloid in (111)c-oriented BiFeO3 thin films by epitiaxial constraint: Enhanced polarization and release of latent magnetizationApplied Physics Letters, 2005
- Ab initio prediction of a multiferroic with large polarization and magnetizationApplied Physics Letters, 2004
- Crystal structure and dielectric and magnetic properties of BiCrO3 as a ferroelectromagnetSolid State Ionics, 2004
- Epitaxial BiFeO 3 Multiferroic Thin Film HeterostructuresScience, 2003
- First Principles Search for Multiferroism in BiCrO3The Journal of Physical Chemistry B, 2002
- Visualizing the Role of Bi 6s “Lone Pairs” in the Off-Center Distortion in Ferromagnetic BiMnO3Chemistry of Materials, 2001
- First-principles investigation of ferromagnetism and ferroelectricity in bismuth manganitePhysical Review B, 1999