We investigate the electrical switching of charge and spin transport in a topological insulator nanoconstriction in a four-terminal device. The switch of the edge channels is caused by the coupling between edge states which overlap in the constriction and by the tunneling effects at the contacts and therefore can be manipulated by tuning the applied voltages on the split gate or by geometrical etching. The switching mechanism can be conveniently studied by electron interferometry involving the measurements of the current in different configurations of the side gates, while the applied bias from the external leads can be tuned to obtain pure charge or pure spin currents (charge- and spin-bias configurations). Relevant signatures of quantum c...
We study the transport properties of the Dirac fermions with a Fermi velocity v(F) on the surface ...
Topological insulators display unique properties, such as the quantum spin Hall effect, because time...
Topological insulators display unique properties, such as the quantum spin Hall effect, because time...
We investigate the electrical switching of charge and spin transport in a topological insulator nano...
We investigate the electrical switching of charge and spin transport in a topological insulator nano...
We investigate the electrical switching of charge and spin transport in a topological insulator nano...
We show how the coupling between opposite edge states, which overlap in a constriction made of the t...
We show how the coupling between opposite edge states, which overlap in a constriction made of the t...
We show how the coupling between opposite edge states, which overlap in a constriction made of the t...
We investigate electron interferometry of edge states in topological insulators. We show that when i...
We investigate electron interferometry of edge states in topological insulators. We show that when i...
We evidence the possibility for coherent electrical manipulation of the spin orientation of topologi...
We study the transport properties of the Dirac fermions with a Fermi velocity vF on the surface of a...
Dirac materials are a class of condensed matter systems in which the relativistic Dirac equation des...
We study the transport properties of the Dirac fermions with a Fermi velocity vF on the surface of a...
We study the transport properties of the Dirac fermions with a Fermi velocity v(F) on the surface ...
Topological insulators display unique properties, such as the quantum spin Hall effect, because time...
Topological insulators display unique properties, such as the quantum spin Hall effect, because time...
We investigate the electrical switching of charge and spin transport in a topological insulator nano...
We investigate the electrical switching of charge and spin transport in a topological insulator nano...
We investigate the electrical switching of charge and spin transport in a topological insulator nano...
We show how the coupling between opposite edge states, which overlap in a constriction made of the t...
We show how the coupling between opposite edge states, which overlap in a constriction made of the t...
We show how the coupling between opposite edge states, which overlap in a constriction made of the t...
We investigate electron interferometry of edge states in topological insulators. We show that when i...
We investigate electron interferometry of edge states in topological insulators. We show that when i...
We evidence the possibility for coherent electrical manipulation of the spin orientation of topologi...
We study the transport properties of the Dirac fermions with a Fermi velocity vF on the surface of a...
Dirac materials are a class of condensed matter systems in which the relativistic Dirac equation des...
We study the transport properties of the Dirac fermions with a Fermi velocity vF on the surface of a...
We study the transport properties of the Dirac fermions with a Fermi velocity v(F) on the surface ...
Topological insulators display unique properties, such as the quantum spin Hall effect, because time...
Topological insulators display unique properties, such as the quantum spin Hall effect, because time...