International audienceThe quantum states of nano-objects can drive electrical transport properties across lateral and local-probe junctions. This raises the prospect, in a solid-state device, of electrically encoding information at the quantum level using spinflip excitations between electron spins. However, this electronic state has no defined magnetic orientation and is short-lived. Using a novel vertical nanojunction process, these limitations are overcome and this steady-state capability is experimentally demonstrated in solid-state spintronic devices. The excited quantum state of a spin chain formed by Co phthalocyanine molecules coupled to a ferromagnetic electrode constitutes a distinct magnetic unit endowed with a coercive field. Th...
An electrical current that flows across individual atoms or molecules can generate exotic quantum-ba...
We study the ac charge and -spin transport through an orbital of a magnetic molecule with spin prece...
International audienceMagnetic molecules are potential building blocks for the design of spintronic ...
International audienceThe quantum states of nano-objects can drive electrical transport properties a...
Electrically manipulating the quantum properties of nano-objects, such as atoms or molecules, is typ...
Ever since spintronics revolutionized information storage, it has found cross-disciplinary applicati...
Spintronic phenomena underpin new device paradigms for data storage and sensing. Scaling these down ...
© 2020 Kieran HymasIn recent years, molecular analogues to electronic devices have been sought after...
A system with two magnetic molecules embedded in a junction between non-magnetic leads was studied. ...
We present a theoretical study exposing the dominant microscopic electronic transport mechanisms und...
Experiments and theory are reexamining how the laws of thermodynamics are expressed in a quantum wor...
It is known that the quantum mechanical ground state of a nanoscale junction has a significant impac...
Nanostructures are promising building blocks for quantum technologies due to their reproducible natu...
Transporting quantum information such as the spin information over micrometric or even millimetric d...
Inspired by cotunneling spectroscopy of spin-states in a single OPE5-based molecule, we investigate ...
An electrical current that flows across individual atoms or molecules can generate exotic quantum-ba...
We study the ac charge and -spin transport through an orbital of a magnetic molecule with spin prece...
International audienceMagnetic molecules are potential building blocks for the design of spintronic ...
International audienceThe quantum states of nano-objects can drive electrical transport properties a...
Electrically manipulating the quantum properties of nano-objects, such as atoms or molecules, is typ...
Ever since spintronics revolutionized information storage, it has found cross-disciplinary applicati...
Spintronic phenomena underpin new device paradigms for data storage and sensing. Scaling these down ...
© 2020 Kieran HymasIn recent years, molecular analogues to electronic devices have been sought after...
A system with two magnetic molecules embedded in a junction between non-magnetic leads was studied. ...
We present a theoretical study exposing the dominant microscopic electronic transport mechanisms und...
Experiments and theory are reexamining how the laws of thermodynamics are expressed in a quantum wor...
It is known that the quantum mechanical ground state of a nanoscale junction has a significant impac...
Nanostructures are promising building blocks for quantum technologies due to their reproducible natu...
Transporting quantum information such as the spin information over micrometric or even millimetric d...
Inspired by cotunneling spectroscopy of spin-states in a single OPE5-based molecule, we investigate ...
An electrical current that flows across individual atoms or molecules can generate exotic quantum-ba...
We study the ac charge and -spin transport through an orbital of a magnetic molecule with spin prece...
International audienceMagnetic molecules are potential building blocks for the design of spintronic ...