The Spin State and Spectroscopic Modes of Multiferroic BiFeO3
arXiv:1302.4365 · doi:10.1103/PhysRevB.87.134416
Abstract
Spectroscopic modes provide the most sensitive probe of the very weak interactions responsible for the properties of the long-wavelength cycloid in the multiferroic phase of \BF below $\TN \approx 640$ K. Three of the four modes measured by THz and Raman spectroscopies were recently identified using a simple microscopic model. While a Dzyaloshinskii-Moriya (DM) interaction along induces the cycloid with wavevector (), easy-axis anisotropy along the direction of the electric polarization induces higher harmonics of the cycloid, which split the modes at 2.49 and 2.67 meV and activate the mode at 3.38 meV. However, that model could not explain the observed low-frequency mode at about 2.17 meV. We now demonstrate that an additional DM interaction along not only produces the observed weak ferromagnetic moment of the high-field phase above 18 T but also activates the spectroscopic matrix elements of the nearly-degenerate, low-frequency and modes, although their scattering intensities remain extremely weak. Even in the absence of easy-axis anisotropy, produces cycloidal harmonics that split and activate . However, the observed mode frequencies and selection rules require that both and are nonzero. This work also resolves an earlier disagreement between spectroscopic and inelastic neutron-scattering measurements.
11 pages, 6 Figures, Submitted to Physical Review B
References in corpus (10)
- Spin current and magneto-electric effect in non-collinear magnets
- Weak ferromagnetism and magnetoelectric coupling in bismuth ferrite
- Role of the Dzyaloshinskii-Moriya interaction in multiferroic perovskites
- Electric-field-induced spin-flop in BiFeO3 single crystals at room-temperature
- Magnetic dispersion and anisotropy in multiferroic BiFeO3
- Optical coupling to spin waves in the cycloidal multiferroic BiFeO3
- Spin wave measurements over the full Brillouin zone of multiferroic BiFeO3
- Singe ferroelectric and chiral magnetic domain of single-crystalline BiFeO in an electric field
- Nonreciprocal Directional Dichroism and Toroidalmagnons in Helical Magnets
- Identifying the Magnetoelectric Modes of Multiferroic BiFeO
Cited by in corpus (26)
- Multiferroic materials and magnetoelectric physics: symmetry, entanglement, excitation, and topology
- Structure and spin dynamics of multiferroric BiFeO
- Optical diode effect in the room-temperature multiferroic BiFeO$_3
- Electronic structure, magnetism, and optical properties of orthorhombic GdFeO3 from first principles
- Terahertz spectroscopy of spin waves in multiferroic BiFeO in high magnetic fields
- Temperature-Dependent Interplay of Dzyaloshinskii-Moriya Interaction and Single-Ion Anisotropy in Multiferroic BiFeO
- Magnetic Interactions in BiFeO: a First-Principles Study
- Inelastic neutron scattering studies of YFeO
- Evidence for two spin-glass transitions with magnetoelastic and magnetoelectric couplings in the multiferroic (BiBa)(FeTi)O system
- Driving spin excitations by hydrostatic pressure in BiFeO3
- Spin and lattice excitations of a BiFeO3 thin film and ceramics
- Field dependence of the Spin State and Spectroscopic Modes of Multiferroic BiFeO
- Ultrafast Light-driven Simultaneous Excitation of Coherent Terahertz Magnons and Phonons in Multiferroic BiFeO
- Spin-Induced Polarizations and Non-Reciprocal Directional Dichroism of Multiferroic BiFeO
- Competing Exchange Interactions in the Multiferroic and Ferrimagnetic CaBaCoO
- Successive field-induced transitions in BiFeO around room temperature
- Normal Modes of a Spin Cycloid or Helix
- The Microscopic Model of BiFeO
- The Magnetoelastic Distortion of Multiferroic BiFeO in the Canted Antiferromagnetic State
- Spin-current driven Dzyaloshinskii-Moriya interaction in the multiferroic BiFeO3 from first-principles
- Pinning, Rotation, and Metastability of BiFeO Cycloidal Domains in a Magnetic Field
- Peculiarities of 57-Fe NMR Spectrum in Micro- and Nanocrystalline Europium Orthoferrites
- Size-dependent bistability in multiferroic nanoparticles
- Orientation Dependence of the Critical Magnetic Field for Multiferroic BiFeO
- Selection rules and dynamic magnetoelectric effect of the spin waves in multiferroic BiFeO
- Impact of the surface phase transition on magnon and phonon excitations in BiFeO3 nanoparticles