Mechanism of ferroelectric instabilities in non d^0 perovskites: LaCrO_3 versus CaMnO_3
arXiv:1011.4486 · doi:10.1103/PhysRevB.83.054110
Abstract
The incompatibility of partial d occupation on the perovskite B-site with the standard charge transfer mechanism for ferroelectricity has been a central paradigm in multiferroics research. Nevertheless, it was recently shown by density functional theory calculations that CaMnO_3 exhibits a polar instability that even dominates over the octahedral tilting for slightly enlarged unit cell volume. Here, we present similar calculations for LaCrO_3, which has the same d^3 B-site electron configuration as CaMnO_3. We find that LaCrO_3 exhibits a very similar, albeit much weaker, polar instability as CaMnO_3. In addition, while the Born effective charge (BEC) of the Mn^{4+} cation in CaMnO_3 is highly anomalous, the BEC of Cr^{3+} in LaCrO_3 is only slightly enhanced. By decomposing the BECs into contributions of individual Wannier functions we show that the ferroelectric instabilities in both systems can be understood in terms of charge transfer between TM d and O p states, analogously to the standard d^0 perovskite ferroelectrics.
6 pages, 4 figures, 2 tables
References in corpus (5)
- Quantum ESPRESSO: a modular and open-source software project for quantum simulations of materials
- Multiferroics: different ways to combine magnetism and ferroelectricity
- Engineering multiferroism in CaMnO
- Non- Mn-driven ferroelectricity in antiferromagnetic BaMnO
- Coupling between magnetic ordering and structural instabilities in perovskite biferroics: A first-principles study
Cited by in corpus (20)
- Multiferroic materials and magnetoelectric physics: symmetry, entanglement, excitation, and topology
- Structure and properties of functional oxide thin films: Insights from electronic-structure calculations
- Screened hybrid functional applied to 3d^0-->3d^8 transition-metal perovskites LaMO3 (M=Sc-Cu): influence of the exchange mixing parameter on the structural, electronic and magnetic properties
- Spin-phonon coupling effects in transition-metal perovskites:a DFT+ and hybrid-functional study
- The potentially multiferroic Aurivillius phase BiFeTiO: cation site preference, electric polarization, and magnetic coupling from first principles
- Dual nature of the ferroelectric and metallic state in LiOsO
- Local inversion symmetry breaking and spin-phonon coupling in perovskite GdCrO3
- Advances in ab-initio theory of Multiferroics. Materials and mechanisms: modelling and understanding
- First-Principles-Based Strain and Temperature Dependent Ferroic Phase Diagram of SrMnO
- High-temperature magnetism and crystallography of a YCrO single crystal
- A comprehensive review on the ferroelectric orthochromates: Synthesis, property, and application
- Mechanism of Ferroelectricity in Perovskites - a Model Study
- First-principles investigation of incipient ferroelectric trends of rutile TiO in bulk and at the (110) surface
- Electric polarization of SrBaMnO: a multiferroic Mott insulator
- Controlling the cation distribution and electric polarization with epitaxial strain in Aurivillius-phase BiFeTiO
- Magnetically driven loss of centrosymmetry in metallic Pb2CoOsO6
- Hexagonal Sr0.6Ba0.4MnO3: Spin and Dipole Coupling via Local Structure
- Spin-Phonon Coupling and Thermodynamic Behaviour in YCrO3 and LaCrO3: Inelastic Neutron Scattering and Lattice Dynamics
- Emergent room-temperature ferroelectricity in spark-plasma sintered DyCrO and LaCrO
- Large ferroelectric polarization in the new double perovskite NaLaMnWO induced by non-polar instabilities