A graphene $pn$ junction is studied theoretically in the presence of both intrinsic and Rashba spin-orbit couplings. We show that a crossover from perfect reflection to perfect transmission is achieved at normal incidence by tuning the perpendicular electric field. By further studying angular dependent transmission, we demonstrate that perfect reflection at normal incidence can be clearly distinguished from trivial band gap effects. We also investigate how spin-orbit effects modify the conductance and the Fano factor associated with a potential step in both $nn$ and $np$ cases
Many of the exotic properties proposed to occur in graphene rely on the possibility of increasing th...
Graphene consists in a single-layer carbon crystal where 2p_z electrons display a linear dispersion ...
Van der Waals heterostructures assembled from atomically thin crystals are ideal model systems to st...
A graphene $pn$ junction is studied theoretically in the presence of both intrinsic and Rashba spin-...
A graphene $pn$ junction is studied theoretically in the presence of both intrinsic and Rashba spin-...
The pn junction in mono-layer graphene with both intrinsic and Rashba spin-orbit interactions is stu...
The pn junction in mono-layer graphene with both intrinsic and Rashba spin-orbit interactions is stu...
The pn junction in mono-layer graphene with both intrinsic and Rashba spin-orbit interactions is stu...
We investigate the effects of spin-orbit couplings on the electron (hole)-E2g phonon interaction in ...
We present a systematic investigation of the effect of spin-orbit interaction on optical conductivit...
We study a model of a p-n junction in single-layer graphene in the presence of a perpendicular magne...
We report on measurements of quantized conductance in gate-defined quantum point contacts in bilayer...
We have investigated the transport properties of a Kane-Mele normal-superconductor (NS) nano-junctio...
The electronic band structure of a material can acquire interesting topological properties in the pr...
We study the electron transport through the graphene pnp junction under a magnetic field and show th...
Many of the exotic properties proposed to occur in graphene rely on the possibility of increasing th...
Graphene consists in a single-layer carbon crystal where 2p_z electrons display a linear dispersion ...
Van der Waals heterostructures assembled from atomically thin crystals are ideal model systems to st...
A graphene $pn$ junction is studied theoretically in the presence of both intrinsic and Rashba spin-...
A graphene $pn$ junction is studied theoretically in the presence of both intrinsic and Rashba spin-...
The pn junction in mono-layer graphene with both intrinsic and Rashba spin-orbit interactions is stu...
The pn junction in mono-layer graphene with both intrinsic and Rashba spin-orbit interactions is stu...
The pn junction in mono-layer graphene with both intrinsic and Rashba spin-orbit interactions is stu...
We investigate the effects of spin-orbit couplings on the electron (hole)-E2g phonon interaction in ...
We present a systematic investigation of the effect of spin-orbit interaction on optical conductivit...
We study a model of a p-n junction in single-layer graphene in the presence of a perpendicular magne...
We report on measurements of quantized conductance in gate-defined quantum point contacts in bilayer...
We have investigated the transport properties of a Kane-Mele normal-superconductor (NS) nano-junctio...
The electronic band structure of a material can acquire interesting topological properties in the pr...
We study the electron transport through the graphene pnp junction under a magnetic field and show th...
Many of the exotic properties proposed to occur in graphene rely on the possibility of increasing th...
Graphene consists in a single-layer carbon crystal where 2p_z electrons display a linear dispersion ...
Van der Waals heterostructures assembled from atomically thin crystals are ideal model systems to st...