We investigate spin effects in transport across fully interacting, finite size graphene armchair nanoribbons (ACNs) contacted to collinearly spin-polarized leads. In such systems, the presence of short ranged Coulomb interaction between bulk states and states localized at the ribbon ends leads to novel spin-dependent phenomena. Specifically, the total spin of the low energy many-body states is conserved during tunneling but that of the bulk and end states is not. As a consequence, in the single-electron regime, dominated by Coulomb blockade phenomena, we find pronounced negative differential conductance features for ACNs contacted to parallel polarized leads. These features are however absent for an anti-parallel contact configuration, whic...
We investigate from first principles the electronic and transport properties of zigzag graphene nano...
We investigate the electron transport through a graphene nanoribbon (GNR) junction with zigzag edges...
Using the non-equilibrium Green’s function method and the Keldysh formalism, we study the effects of...
We investigate spin effects in transport across fully interacting, finite size graphene armchair nan...
We investigate spin effects in transport across fully interacting, finite size graphene armchair nan...
We investigate spin effects in transport across fully interacting, finite size graphene armchair nan...
e study the effect of electron-electron interaction and spin on electronic and transport properties ...
International audienceWe show theoretically that the intrinsic (phonon-limited) carrier mobility in ...
International audienceWe show theoretically that the intrinsic (phonon-limited) carrier mobility in ...
International audienceWe show theoretically that the intrinsic (phonon-limited) carrier mobility in ...
We present a microscopic theory for interacting graphene armchair nanoribbon quantum dots. Long rang...
International audienceWe show theoretically that the intrinsic (phonon-limited) carrier mobility in ...
Abstract – We present a microscopic theory for interacting graphene armchair nanoribbon quantum dots...
Abstract – We present a microscopic theory for interacting graphene armchair nanoribbon quantum dots...
We investigate from first principles the electronic and transport properties of zigzag graphene nano...
We investigate from first principles the electronic and transport properties of zigzag graphene nano...
We investigate the electron transport through a graphene nanoribbon (GNR) junction with zigzag edges...
Using the non-equilibrium Green’s function method and the Keldysh formalism, we study the effects of...
We investigate spin effects in transport across fully interacting, finite size graphene armchair nan...
We investigate spin effects in transport across fully interacting, finite size graphene armchair nan...
We investigate spin effects in transport across fully interacting, finite size graphene armchair nan...
e study the effect of electron-electron interaction and spin on electronic and transport properties ...
International audienceWe show theoretically that the intrinsic (phonon-limited) carrier mobility in ...
International audienceWe show theoretically that the intrinsic (phonon-limited) carrier mobility in ...
International audienceWe show theoretically that the intrinsic (phonon-limited) carrier mobility in ...
We present a microscopic theory for interacting graphene armchair nanoribbon quantum dots. Long rang...
International audienceWe show theoretically that the intrinsic (phonon-limited) carrier mobility in ...
Abstract – We present a microscopic theory for interacting graphene armchair nanoribbon quantum dots...
Abstract – We present a microscopic theory for interacting graphene armchair nanoribbon quantum dots...
We investigate from first principles the electronic and transport properties of zigzag graphene nano...
We investigate from first principles the electronic and transport properties of zigzag graphene nano...
We investigate the electron transport through a graphene nanoribbon (GNR) junction with zigzag edges...
Using the non-equilibrium Green’s function method and the Keldysh formalism, we study the effects of...