The emergence of a triple phase point in a two-dimensional parameter space (such as pressure and temperature) can offer unforeseen opportunities for the coupling of two seemingly independent order parameters. On the basis of this, we demonstrate the electric control of magnetic order by manipulating chemical pressure: lanthanum substitution in the antiferromagnetic ferroelectric BiFeO3. Our demonstration relies on the finding that a multiferroic triple phase point of a single spin-disordered phase and two spin-ordered phases emerges near room temperature in Bi0.9La0.1FeO3 ferroelectric thin films. By using spatially resolved X-ray absorption spectroscopy, we provide direct evidence that the electric poling of a particular region of the comp...
Complex-oxide materials tuned to be near phase boundaries via chemistry/composition, temperature, pr...
Complex-oxide materials tuned to be near phase boundaries via chemistry/composition, temperature, pr...
The control of magnetism via an electric field has attracted substantial attention because of potent...
The emergence of a triple phase point in a two-dimensional parameter space (such as pressure and tem...
The emergence of a triple phase point in a two-dimensional parameter space (such as pressure and tem...
International audienceBiFeO3, a typical multiferroic compound, owns complicated interactions among i...
Strong spin-lattice coupling in condensed matter gives rise to intriguing physical phenomena such as...
International audienceBiFeO3, a typical multiferroic compound, owns complicated interactions among i...
2020 Author(s). BiFeO3, a typical multiferroic compound, owns complicated interactions among its cha...
We propose a way to use an electric field to control the magnetic ordering of the tetragonal-like Bi...
BiFeO3 is a multiferroic materials in which ferroelectric and anti-ferromagnetic orders coexist well...
In multiferroic BiFeO3 thin films grown on highly mismatched LaAlO3 substrates, we reveal the coexis...
[EN] A promising approach for obtaining a large magnetoelectric response at room temperature in sing...
Magnetoelectric coupling at room temperature in multiferroic materials, such as BiFeO3, is one of th...
Magnetoelectric coupling at room temperature in multiferroic materials, such as BiFeO3, is one of th...
Complex-oxide materials tuned to be near phase boundaries via chemistry/composition, temperature, pr...
Complex-oxide materials tuned to be near phase boundaries via chemistry/composition, temperature, pr...
The control of magnetism via an electric field has attracted substantial attention because of potent...
The emergence of a triple phase point in a two-dimensional parameter space (such as pressure and tem...
The emergence of a triple phase point in a two-dimensional parameter space (such as pressure and tem...
International audienceBiFeO3, a typical multiferroic compound, owns complicated interactions among i...
Strong spin-lattice coupling in condensed matter gives rise to intriguing physical phenomena such as...
International audienceBiFeO3, a typical multiferroic compound, owns complicated interactions among i...
2020 Author(s). BiFeO3, a typical multiferroic compound, owns complicated interactions among its cha...
We propose a way to use an electric field to control the magnetic ordering of the tetragonal-like Bi...
BiFeO3 is a multiferroic materials in which ferroelectric and anti-ferromagnetic orders coexist well...
In multiferroic BiFeO3 thin films grown on highly mismatched LaAlO3 substrates, we reveal the coexis...
[EN] A promising approach for obtaining a large magnetoelectric response at room temperature in sing...
Magnetoelectric coupling at room temperature in multiferroic materials, such as BiFeO3, is one of th...
Magnetoelectric coupling at room temperature in multiferroic materials, such as BiFeO3, is one of th...
Complex-oxide materials tuned to be near phase boundaries via chemistry/composition, temperature, pr...
Complex-oxide materials tuned to be near phase boundaries via chemistry/composition, temperature, pr...
The control of magnetism via an electric field has attracted substantial attention because of potent...