Electric polarization reversal and memory in a multiferroic material induced by magnetic fields
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Summary
A striking interplay between ferroelectricity and magnetism in the multiferroic TbMn2O5 is reported, demonstrated by a highly reproducible electric polarization reversal and permanent polarization imprint that are both actuated by an applied magnetic field.
- Type
- article
- Published
- 2004-05-27
- Cited by
- 1,936
- References
- 26
- OpenAlex
- https://openalex.org/W2085083272
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:4424028
Keywords
Multiferroics, Ferroelectricity, Magnetism, Polarization density, Condensed matter physics
References
- Ferroelectric Phase Transition in (NH4)2SO4-K2SO4 Mixed Crystals
- On a magnetoelectric classification of materials
- Ferrielectric behaviors in Li2Ge7O15 crystals
- Phase transitions in BaMnF4
- Ferrielectric ordering in lamellar CuInP 2 S 6
- On definitions, units, measurements, tensor forms of the linear magnetoelectric effect and on a new dynamic method applied to Cr-Cl boracite
- Magnetoelectric properties of some rare earth molybdates
- The magnetic structures of the rare-earth manganates ErMn2O5 and TbMn2O5
- Some Properties of Ferromagnetoelectric Nickel‐Iodine Boracite, Ni3B7O13I
- Magnetoelectric effect and low-temperature phase transitions of TbMn2O5
- Magnetoelectric effect of rare earth manganese oxide RMn2O5
- Dielectric and magnetic anomalies and spin frustration in hexagonal R MnO 3 ( R = Y , Yb, and Lu)
- Pyroelectric effect and possible ferroelectric transition of helimagnetic and
- Some Properties of Ferromagnetoelectric Nickel Iodine Boracite
- Structures magnétiques sinusoïdales et hélicoïdales de la terre rare dans TMn2O5
- Why Are There so Few Magnetic Ferroelectrics
- Features of the magnetoelectric properties of BiFeO3 in high magnetic fields
- Observation of coupled magnetic and electric domains
- Multi-ferroic magnetoelectrics
- Magnetocapacitance effect in multiferroic BiMnO 3
Cited by
- Tunnel junctions with multiferroic barriers.
- Pressure-dependent electronic structures in multiferroic DyMnO(3): A combined lifetime-broadening-suppressed x-ray absorption spectroscopy and ab initio electronic structure study.
- Experimental observation of ferrielectricity in multiferroic DyMn2O5
- Diameter-dependent multiferroic functionality in hybrid core/shell NWs.
- Distorted Monolayer ReS2 with Low-Magnetic-Field Controlled Magnetoelectricity.
- Growth and Characterization of Hexagonal Lu-Fe-O Multiferroic Thin Films
- E-field Tuning of Magnetism in Mulitferroic Heterostructures
- First-principles study of the magnetic stability and the exchange couplings of LaMn2O5
- Large magnetoelectric coupling in magnetically short-range ordered Bi5Ti3FeO15 film
- Spiral spin structures and origin of the magnetoelectric coupling in YMn2O5
- Properties of Ferroelectric Perovskite Structures under Non-equilibrium Conditions
- Magnetoelectric phenomena in single-phase and composite systems
- A Microscopic Model of Magnetoelectric Interactions in Ni3V2O8
- Etude des Langasites magnétiques: De la frustration magnétique au multiferroïsme
- Étude du rôle joué par le réseau cristallin dans le couplage magnéto-électrique des matériaux multiferroïques
- Magnetism and Magnetotransport in Complex Oxide Thin Film Heterostructures
- Numerical Study of the Transition Metal Oxides and the Transport Properties of Iron Pnictides
- Room-temperature ferromagnetism in Fe-doped wide band gap ferroelectric Bi0.5K0.5TiO3 nanocrystals
- Crystal structure and electrical transport properties of polycrystalline TbMn1-xFexO3
- Ferroelectric properties and the origin of the magnetism in the Bi6Fe2Ti3O18 thin films
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