We calculate the transmission coefficient for a particle crossing a potential barrier in monolayer graphene with Rashba spin-orbit coupling and in bilayer graphene. We show that in both cases one can go from Klein tunneling regime, characterized by perfect normal transmission, to anti-Klein tunneling regime, with perfect normal reflection, by tuning the Rashba spin-orbit coupling for a monolayer or the interplane coupling for a bilayer graphene. We show that the intermediate regime is characterized by a non-monotonic behavior with oscillations and resonances in the normal transmission amplitude as a function of the coupling and of the potential parameters
In the present work, we investigate how structural defects in graphene can change its transport prop...
In the present work, we investigate how structural defects in graphene can change its transport prop...
We show that in gapped bilayer graphene, quasiparticle tunneling and the corresponding Berry phase c...
Within an effective Dirac theory the low-energy dispersions of monolayer graphene in the presence of...
Within an effective Dirac theory the low-energy dispersions of monolayer graphene in the presence of...
We show that in gapped bilayer graphene, quasiparticle tunneling and the corresponding Berry phase c...
We show that in gapped bilayer graphene, quasiparticle tunneling and the corresponding Berry phase c...
We show that in gapped bilayer graphene, quasiparticle tunneling and the corresponding Berry phase c...
We show that in gapped bilayer graphene, quasiparticle tunneling and the corresponding Berry phase c...
We show that in gapped bilayer graphene, quasiparticle tunneling and the corresponding Berry phase c...
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...
This article provides a pedagogical review on Klein tunneling in graphene, i.e. the peculi...
© 2022 American Physical Society.The Klein paradox consists in the perfect tunneling of relativistic...
In the present work, we investigate how structural defects in graphene can change its transport prop...
In the present work, we investigate how structural defects in graphene can change its transport prop...
We show that in gapped bilayer graphene, quasiparticle tunneling and the corresponding Berry phase c...
Within an effective Dirac theory the low-energy dispersions of monolayer graphene in the presence of...
Within an effective Dirac theory the low-energy dispersions of monolayer graphene in the presence of...
We show that in gapped bilayer graphene, quasiparticle tunneling and the corresponding Berry phase c...
We show that in gapped bilayer graphene, quasiparticle tunneling and the corresponding Berry phase c...
We show that in gapped bilayer graphene, quasiparticle tunneling and the corresponding Berry phase c...
We show that in gapped bilayer graphene, quasiparticle tunneling and the corresponding Berry phase c...
We show that in gapped bilayer graphene, quasiparticle tunneling and the corresponding Berry phase c...
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...
This article provides a pedagogical review on Klein tunneling in graphene, i.e. the peculi...
© 2022 American Physical Society.The Klein paradox consists in the perfect tunneling of relativistic...
In the present work, we investigate how structural defects in graphene can change its transport prop...
In the present work, we investigate how structural defects in graphene can change its transport prop...
We show that in gapped bilayer graphene, quasiparticle tunneling and the corresponding Berry phase c...