We demonstrate that hexagonal graphene nanoflakes with zigzag edges display quantum interference (QI) patterns analogous to benzene molecular junctions. In contrast with graphene sheets, these nanoflakes also host magnetism. The cooperative effect of QI and magnetism enables spin-dependent quantum interference effects that result in a nearly complete spin polarization of the current and holds a huge potential for spintronic applications. We understand the origin of QI in terms of symmetry arguments, which show the robustness and generality of the effect. This also allows us to devise a concrete protocol for the electrostatic control of the spin polarization of the current by breaking the sublattice symmetry of graphene, by deposition on hex...
International audience2D materials offer the ability to expose their electronic structure to manipul...
Graphene, a single-layer network of carbon atoms, shows outstanding electrical and mechanical proper...
The lack of some spatial symmetries in planar devices with Rashba spin-orbit interactions opens up t...
We demonstrate that hexagonal graphene nanoflakes with zigzag edges display quantum interference (QI...
We demonstrate that hexagonal graphene nanoflakes with zigzag edges display quantum interference (QI...
We study the role of electronic spin and valley symmetry in the quantum interference (QI) patterns o...
Spin dependent electron transport measurements on graphene are of high importance to explore possibl...
Up to date, all spin transport experiments on graphene were done in a semiclassical regime, disregar...
Up to date, all spin transport experiments on graphene were done in a semiclassical regime, disregar...
We study electronic transport in systems comprising square graphene nanorings with a ferromagnetic i...
Zig-zag graphene nanoribbons (ZGNRs) are known to possess spin moments at the hydrogen- terminated e...
Up to date, all spin transport experiments on graphene were done in a semiclassical regime, disregar...
Spintronics, which manipulate spins but not electron charge, are highly valued as energy and thermal...
We propose a novel spin filter based on a graphene nanoring fabricated above a ferromagnetic strip. ...
International audience2D materials offer the ability to expose their electronic structure to manipul...
International audience2D materials offer the ability to expose their electronic structure to manipul...
Graphene, a single-layer network of carbon atoms, shows outstanding electrical and mechanical proper...
The lack of some spatial symmetries in planar devices with Rashba spin-orbit interactions opens up t...
We demonstrate that hexagonal graphene nanoflakes with zigzag edges display quantum interference (QI...
We demonstrate that hexagonal graphene nanoflakes with zigzag edges display quantum interference (QI...
We study the role of electronic spin and valley symmetry in the quantum interference (QI) patterns o...
Spin dependent electron transport measurements on graphene are of high importance to explore possibl...
Up to date, all spin transport experiments on graphene were done in a semiclassical regime, disregar...
Up to date, all spin transport experiments on graphene were done in a semiclassical regime, disregar...
We study electronic transport in systems comprising square graphene nanorings with a ferromagnetic i...
Zig-zag graphene nanoribbons (ZGNRs) are known to possess spin moments at the hydrogen- terminated e...
Up to date, all spin transport experiments on graphene were done in a semiclassical regime, disregar...
Spintronics, which manipulate spins but not electron charge, are highly valued as energy and thermal...
We propose a novel spin filter based on a graphene nanoring fabricated above a ferromagnetic strip. ...
International audience2D materials offer the ability to expose their electronic structure to manipul...
International audience2D materials offer the ability to expose their electronic structure to manipul...
Graphene, a single-layer network of carbon atoms, shows outstanding electrical and mechanical proper...
The lack of some spatial symmetries in planar devices with Rashba spin-orbit interactions opens up t...