We uncover two anomalous features in the nonlocal transport behavior of two-dimensional metallic materials with spin-orbit coupling. Firstly, the nonlocal resistance can have negative values and oscillate with distance, even in the absence of a magnetic field. Secondly, the oscillations of the nonlocal resistance under an applied in-plane magnetic field (Hanle effect) can be asymmetric under field reversal. Both features are produced by direct magnetoelectric coupling, which is possible in materials with broken inversion symmetry but was not included in previous spin diffusion theories of nonlocal transport. These effects can be used to identify the relative contributions of different spin-charge conversion mechanisms. They should be observ...
The abilities to inject and detect spin carriers are fundamental for research on transport and manip...
Recent focus on two dimensional materials and spin-coupled phenomena holds future potential for fast...
Van der Waals heterostructures assembled from atomically thin crystals are ideal model systems to st...
Resumen del póster presentado al 1st Workshop Spain-Taiwan: "2D Materials and Interfaces for Spintro...
We report on nonlocal transport in large-scale epitaxial graphene on silicon carbide under an applie...
A nonlocal electric response in the spin Hall regime, resulting from spin diffusion mediating charge...
Graphene grown epitaxially on SiC, close to the charge neutrality point (CNP), in an orthogonal mag...
Recent experiments reporting an unexpectedly large spin Hall effect (SHE) in graphene decorated with...
We investigate the spin transport and precession in graphene by using the Hanle effect in nonlocal a...
Recent experiments find the signal of giant nonlocal resistance R-NL in H-shaped graphene samples du...
Recent experiments reporting an unexpectedly large spin Hall effect (SHE) in graphene decorated with...
Altres ajuts: programa CERCA.The observation of large nonlocal resistances near the Dirac point in g...
Engineering the electron dispersion of graphene to be spin-dependent is crucial for the realization ...
Since its discovery, graphene has been a promising material for spintronics: its low spin-orbit coup...
Axion electrodynamics governs electromagnetic properties of Weyl metals. Although transmission and r...
The abilities to inject and detect spin carriers are fundamental for research on transport and manip...
Recent focus on two dimensional materials and spin-coupled phenomena holds future potential for fast...
Van der Waals heterostructures assembled from atomically thin crystals are ideal model systems to st...
Resumen del póster presentado al 1st Workshop Spain-Taiwan: "2D Materials and Interfaces for Spintro...
We report on nonlocal transport in large-scale epitaxial graphene on silicon carbide under an applie...
A nonlocal electric response in the spin Hall regime, resulting from spin diffusion mediating charge...
Graphene grown epitaxially on SiC, close to the charge neutrality point (CNP), in an orthogonal mag...
Recent experiments reporting an unexpectedly large spin Hall effect (SHE) in graphene decorated with...
We investigate the spin transport and precession in graphene by using the Hanle effect in nonlocal a...
Recent experiments find the signal of giant nonlocal resistance R-NL in H-shaped graphene samples du...
Recent experiments reporting an unexpectedly large spin Hall effect (SHE) in graphene decorated with...
Altres ajuts: programa CERCA.The observation of large nonlocal resistances near the Dirac point in g...
Engineering the electron dispersion of graphene to be spin-dependent is crucial for the realization ...
Since its discovery, graphene has been a promising material for spintronics: its low spin-orbit coup...
Axion electrodynamics governs electromagnetic properties of Weyl metals. Although transmission and r...
The abilities to inject and detect spin carriers are fundamental for research on transport and manip...
Recent focus on two dimensional materials and spin-coupled phenomena holds future potential for fast...
Van der Waals heterostructures assembled from atomically thin crystals are ideal model systems to st...