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Controllable electrical, magnetoelectric and optical properties of BiFeO3 via domain engineering
Abstract Bismuth ferrite (BiFeO 3, BFO) as one of the few single-phase room-temperature
multiferroics, has aroused ever-increasing enthusiasm in research communities during the …
multiferroics, has aroused ever-increasing enthusiasm in research communities during the …
Multiferroicity: the coupling between magnetic and polarization orders
Multiferroics, defined for those multifunctional materials in which two or more kinds of
fundamental ferroicities coexist, have become one of the hottest topics of condensed matter …
fundamental ferroicities coexist, have become one of the hottest topics of condensed matter …
Electrical control of antiferromagnetic domains in multiferroic BiFeO3 films at room temperature
Multiferroic materials, which offer the possibility of manipulating the magnetic state by an
electric field or vice versa, are of great current interest. In this work, we demonstrate the first …
electric field or vice versa, are of great current interest. In this work, we demonstrate the first …
Ferroelastic switching for nanoscale non-volatile magnetoelectric devices
Abstract Multiferroics, where (anti-) ferromagnetic, ferroelectric and ferroelastic order
parameters coexist,,,,, enable manipulation of magnetic ordering by an electric field through …
parameters coexist,,,,, enable manipulation of magnetic ordering by an electric field through …
Local polarization dynamics in ferroelectric materials
Ferroelectrics and multiferroics have recently emerged as perspective materials for
information technology and data storage applications. The combination of extremely narrow …
information technology and data storage applications. The combination of extremely narrow …
Deterministic control of ferroelastic switching in multiferroic materials
Multiferroic materials showing coupled electric, magnetic and elastic orderings provide a
platform to explore complexity and new paradigms for memory and logic devices. Until now …
platform to explore complexity and new paradigms for memory and logic devices. Until now …
Optical band gap of BiFeO3 grown by molecular-beam epitaxy
Bi Fe O 3 thin films have been deposited on (001) Sr Ti O 3 substrates by adsorption-
controlled reactive molecular-beam epitaxy. For a given bismuth overpressure and oxygen …
controlled reactive molecular-beam epitaxy. For a given bismuth overpressure and oxygen …
[PDF][PDF] Domain engineering for enhanced ferroelectric properties of epitaxial (001) BiFeO thin films
Multiferroic BiFeO3 has attracted great interest due to its promising application to
magnetoelectric devices.[1–3] In addition, the high remanent polarization and piezoelectric …
magnetoelectric devices.[1–3] In addition, the high remanent polarization and piezoelectric …
[HTML][HTML] Controlling magnetism with multiferroics
Multiferroics, materials combining multiple order parameters, offer an exciting way of
coupling phenomena such as electronic and magnetic order. Using epitaxial growth and …
coupling phenomena such as electronic and magnetic order. Using epitaxial growth and …
Electrically assisted magnetic recording in multiferroic nanostructures
We demonstrate the room-temperature control of magnetization reversal with an electric field
in an epitaxial nanostructure consisting of ferrimagnetic nanopillars embedded in a …
in an epitaxial nanostructure consisting of ferrimagnetic nanopillars embedded in a …