The new frontier for spintronics is the realization of devices in which the spin can be controlled by electric fields. Multiferroics, materials exhibiting strong interplay between spin and orbital degrees of freedom, are candidates for the realization of such a paradigm. In this work, we study the magnetoelectric coupling in epitaxial BiMnO 3 thin films which exhibit a large saturation magnetization. By combining X-ray absorption spectroscopy data and theoretical modeling, we demonstrate that BiMnO 3 thin films have an improper magnetoelectric behavior, characterized by competing antiferromagnetic and ferromagnetic correlations. As a consequence, we show that in these materials the Mn-3d orbital and magnetic orders can be tuned via the ferr...
BiMnO3 has long been at the forefront of multiferroics research. Controversy exists, however, over w...
We investigate the possibility of controlling the magnetic phase transition of the heterointerface b...
Controlling magnetism by using electric fields is a goal of research towards novel spintronic device...
The new frontier for spintronics is the realization of devices in which the spin can be controlled b...
The new frontier for spintronics is the realization of devices in which the spin can be controlled b...
The new frontier for spintronics is the realization of devices in which the spin can be controlled b...
The new frontier for spintronics is the realization of devices in which the spin can be controlled b...
The new frontier for spintronics is the realization of devices in which the spin can be controlled b...
The new frontier for spintronics is the realization of devices in which the spin can be controlled b...
Epitaxial thin films of multiferroic BiMnO3 were synthesized on SrTiO3 substrates. Long range orderi...
Epitaxial thin films of multiferroic perovskite BiMnO3 were synthesized on SrTiO3 substrates, and or...
A current challenge in the field of magnetoelectric multiferroics is to identify systems that allow ...
Epitaxial thin films of multiferroic perovskite $\chem{BiMnO_3}$ were synthesized on $\chem{SrTiO_3}...
A current challenge in the field of magnetoelectric multiferroics is to identify systems that allow ...
BiFeO3 is a multiferroic materials in which ferroelectric and anti-ferromagnetic orders coexist well...
BiMnO3 has long been at the forefront of multiferroics research. Controversy exists, however, over w...
We investigate the possibility of controlling the magnetic phase transition of the heterointerface b...
Controlling magnetism by using electric fields is a goal of research towards novel spintronic device...
The new frontier for spintronics is the realization of devices in which the spin can be controlled b...
The new frontier for spintronics is the realization of devices in which the spin can be controlled b...
The new frontier for spintronics is the realization of devices in which the spin can be controlled b...
The new frontier for spintronics is the realization of devices in which the spin can be controlled b...
The new frontier for spintronics is the realization of devices in which the spin can be controlled b...
The new frontier for spintronics is the realization of devices in which the spin can be controlled b...
Epitaxial thin films of multiferroic BiMnO3 were synthesized on SrTiO3 substrates. Long range orderi...
Epitaxial thin films of multiferroic perovskite BiMnO3 were synthesized on SrTiO3 substrates, and or...
A current challenge in the field of magnetoelectric multiferroics is to identify systems that allow ...
Epitaxial thin films of multiferroic perovskite $\chem{BiMnO_3}$ were synthesized on $\chem{SrTiO_3}...
A current challenge in the field of magnetoelectric multiferroics is to identify systems that allow ...
BiFeO3 is a multiferroic materials in which ferroelectric and anti-ferromagnetic orders coexist well...
BiMnO3 has long been at the forefront of multiferroics research. Controversy exists, however, over w...
We investigate the possibility of controlling the magnetic phase transition of the heterointerface b...
Controlling magnetism by using electric fields is a goal of research towards novel spintronic device...