International audienceNanostructured materials often have properties widely different from bulk, imposed by quantum limits to a physical property of the material. This includes, for example, superparamagnetism and quantized conductance, but original properties such as magnetoresistance in nonmagnetic molecular structures may also emerge. In this Letter, we report on the atomic manipulation of platinum nanocontacts in order to induce magnetoresistance. Platinum is a paramagnetic 5d metal, but atomic chains of this material have been predicted to be magnetically ordered with a large anisotropy. Remarkably, we find that a gas flow stabilizes Pt atomic structures in a break junction experiment, where we observe extraordinary resistance changes ...
Whenever a nanosystem such as an adatom, a cluster or a nanowire spontaneously magnetizes, a crucial...
Here, I present a theoretical study, based on non-equilibrium quantum statistical mechanics and on t...
Two-dimensional systems, such as ultrathin epitaxial films and superlattices, display magnetic prope...
International audienceNanostructured materials often have properties widely different from bulk, imp...
Nanostructured materials often have properties widely different from bulk, imposed by quantum limits...
Nanostructured materials often have properties widely different from bulk, imposed by quantum limits...
The development of atomic-scale structures revealing novel transport phenomena is a major goal of na...
Pt nanocontacts, like those formed in mechanically controlled break junctions, are shown to develop ...
Platinum monatomic nanowires were predicted to spontaneously develop magnetism, involving a sizable ...
Using first-principles calculations, we study the magnetism of 5d transition-metal atomic junctions ...
In this article we present the fabrication of freestanding thin-film nanobridges of Ir. We perform m...
Recent experimental data demonstrate emerging magnetic order in platinum atomically thin nanowires. ...
Electrically manipulating the quantum properties of nano-objects, such as atoms or molecules, is typ...
Nanomagnetic materials are playing an increasingly important role in modern technologies. A particul...
Control of magnetism on the atomic scale is becoming essential as data storage devices are miniaturi...
Whenever a nanosystem such as an adatom, a cluster or a nanowire spontaneously magnetizes, a crucial...
Here, I present a theoretical study, based on non-equilibrium quantum statistical mechanics and on t...
Two-dimensional systems, such as ultrathin epitaxial films and superlattices, display magnetic prope...
International audienceNanostructured materials often have properties widely different from bulk, imp...
Nanostructured materials often have properties widely different from bulk, imposed by quantum limits...
Nanostructured materials often have properties widely different from bulk, imposed by quantum limits...
The development of atomic-scale structures revealing novel transport phenomena is a major goal of na...
Pt nanocontacts, like those formed in mechanically controlled break junctions, are shown to develop ...
Platinum monatomic nanowires were predicted to spontaneously develop magnetism, involving a sizable ...
Using first-principles calculations, we study the magnetism of 5d transition-metal atomic junctions ...
In this article we present the fabrication of freestanding thin-film nanobridges of Ir. We perform m...
Recent experimental data demonstrate emerging magnetic order in platinum atomically thin nanowires. ...
Electrically manipulating the quantum properties of nano-objects, such as atoms or molecules, is typ...
Nanomagnetic materials are playing an increasingly important role in modern technologies. A particul...
Control of magnetism on the atomic scale is becoming essential as data storage devices are miniaturi...
Whenever a nanosystem such as an adatom, a cluster or a nanowire spontaneously magnetizes, a crucial...
Here, I present a theoretical study, based on non-equilibrium quantum statistical mechanics and on t...
Two-dimensional systems, such as ultrathin epitaxial films and superlattices, display magnetic prope...