Magnetic, dielectric and calorimetric studies on 0.9BiFeO(3)-0.1BaTiO(3) indicate strong magnetoelectric coupling. XRD studies reveal a very remarkable change in the rhombohedral distortion angle and a significant shift in the atomic positions at the magnetic T-c due to an isostructural phase transition. The calculated polarization using Rietveld refined atomic positions scales linearly with magnetization. Our results provide the first unambiguous, atomic level evidence for magnetoelectric coupling of intrinsic multiferroic origin in a BiFeO3-based system
We have investigated the magnetoelectric coupling in multiferroic system (0.9 - x) BiFeO3-xPbTiO(3)-...
Multiferroic materials have attracted much interest due to the unusual coexistence of ferroelectric ...
Some multiferroic materials display simultaneous ferroelectric and magnetic order. In some of these ...
Magnetic, dielectric and calorimetric studies on 0.9BiFeO3-0.1BaTiO3 indicate strong magnetoelectric...
Magnetization, frequency dependent dielectric, and structural studies on 0.73BiFeO3-0.27PbTiO3 in th...
Magnetization, frequency dependent dielectric, and structural studies on 0.73BiFeO3–0.27PbTiO3 in th...
BiFeO3 is a multiferroic materials in which ferroelectric and anti-ferromagnetic orders coexist well...
International audienceBiFeO3, a typical multiferroic compound, owns complicated interactions among i...
Correlations were established between the hyperfine field distribution around the Fe atoms, the mult...
Magnetoelectric coupling at room temperature in multiferroic materials, such as BiFeO3, is one of th...
How magnetoelectric coupling actually occurs on a microscopic level in multiferroic BiFeO3 is not we...
2020 Author(s). BiFeO3, a typical multiferroic compound, owns complicated interactions among its cha...
Isolated nonmagnetic substitutional defect ions experience huge coupled electric magnetic interactio...
We report the results of direct measurement of remanent hysteresis loops on nanochains of BiFeO3 at ...
Our measured dielectric constant and mechanical response of multiferroic BiFeO3 indicate four phase ...
We have investigated the magnetoelectric coupling in multiferroic system (0.9 - x) BiFeO3-xPbTiO(3)-...
Multiferroic materials have attracted much interest due to the unusual coexistence of ferroelectric ...
Some multiferroic materials display simultaneous ferroelectric and magnetic order. In some of these ...
Magnetic, dielectric and calorimetric studies on 0.9BiFeO3-0.1BaTiO3 indicate strong magnetoelectric...
Magnetization, frequency dependent dielectric, and structural studies on 0.73BiFeO3-0.27PbTiO3 in th...
Magnetization, frequency dependent dielectric, and structural studies on 0.73BiFeO3–0.27PbTiO3 in th...
BiFeO3 is a multiferroic materials in which ferroelectric and anti-ferromagnetic orders coexist well...
International audienceBiFeO3, a typical multiferroic compound, owns complicated interactions among i...
Correlations were established between the hyperfine field distribution around the Fe atoms, the mult...
Magnetoelectric coupling at room temperature in multiferroic materials, such as BiFeO3, is one of th...
How magnetoelectric coupling actually occurs on a microscopic level in multiferroic BiFeO3 is not we...
2020 Author(s). BiFeO3, a typical multiferroic compound, owns complicated interactions among its cha...
Isolated nonmagnetic substitutional defect ions experience huge coupled electric magnetic interactio...
We report the results of direct measurement of remanent hysteresis loops on nanochains of BiFeO3 at ...
Our measured dielectric constant and mechanical response of multiferroic BiFeO3 indicate four phase ...
We have investigated the magnetoelectric coupling in multiferroic system (0.9 - x) BiFeO3-xPbTiO(3)-...
Multiferroic materials have attracted much interest due to the unusual coexistence of ferroelectric ...
Some multiferroic materials display simultaneous ferroelectric and magnetic order. In some of these ...