Electronic transport in a graphene-based ferromagnetic/normal/ferromagnetic junction is investigated by means of the Landauer-Büttiker formalism and the nonequilibrium Green function technique. For the zigzag edge case, the results show that the conductance is always larger than e2/h for the parallel configuration of lead magnetizations, but for the antiparallel configuration the conductance becomes zero because of the band-selective rule. Therefore, a magnetoresistance (MR) plateau emerges with the value 100% when the Fermi energy is located around the Dirac point. In addition, choosing narrower graphene ribbons can yield wider 100% MR plateaus and the length change of the central graphene region does not affect the 100% MR plateaus. Altho...
Most of the modern day Field-Effect Transistors (FET) in microelectronics are constructed in order t...
We investigate spin transport in diffusive graphene nanoribbons with both clean and rough zigzag edg...
A large magnetoresistance (MR) effect of few-layers graphene between two non-magnetic metal electrod...
Using the tight-binding approximation and the nonequilibrium Green's function approach, we investiga...
This thesis focuses on the transport properties of graphene, a new emerging atomically thin, two-dim...
By computing spin-polarized electronic transport across a finite zigzag graphene ribbon bridging two...
The spin filter effect and magnetoresistance (MR) in the graphene nanoribbons with zigzag edges have...
Sign-changeable spin-filter efficiency is predicted in both the ferromagnetic and antiferromagnetic ...
We investigate the electron transport through a graphene nanoribbon (GNR) junction with zigzag edges...
Novel, two-dimensional materials have allowed for the inception and elucidation of a plethora of phy...
Artificial disorder was introduced gradually into monolayer graphene by controlling Ga(+) ion irradi...
e study the effect of electron-electron interaction and spin on electronic and transport properties ...
ABSTRACT: The unique ultrarelativistic, massless, nature of electron states in two-dimensional exten...
We investigate magnetotransport in a ferromagnetic-normal-ferromagnetic graphene junction where a ga...
The spin polarized electronic transport in a junction based on ferromagnetic (FM) zigzag graphene na...
Most of the modern day Field-Effect Transistors (FET) in microelectronics are constructed in order t...
We investigate spin transport in diffusive graphene nanoribbons with both clean and rough zigzag edg...
A large magnetoresistance (MR) effect of few-layers graphene between two non-magnetic metal electrod...
Using the tight-binding approximation and the nonequilibrium Green's function approach, we investiga...
This thesis focuses on the transport properties of graphene, a new emerging atomically thin, two-dim...
By computing spin-polarized electronic transport across a finite zigzag graphene ribbon bridging two...
The spin filter effect and magnetoresistance (MR) in the graphene nanoribbons with zigzag edges have...
Sign-changeable spin-filter efficiency is predicted in both the ferromagnetic and antiferromagnetic ...
We investigate the electron transport through a graphene nanoribbon (GNR) junction with zigzag edges...
Novel, two-dimensional materials have allowed for the inception and elucidation of a plethora of phy...
Artificial disorder was introduced gradually into monolayer graphene by controlling Ga(+) ion irradi...
e study the effect of electron-electron interaction and spin on electronic and transport properties ...
ABSTRACT: The unique ultrarelativistic, massless, nature of electron states in two-dimensional exten...
We investigate magnetotransport in a ferromagnetic-normal-ferromagnetic graphene junction where a ga...
The spin polarized electronic transport in a junction based on ferromagnetic (FM) zigzag graphene na...
Most of the modern day Field-Effect Transistors (FET) in microelectronics are constructed in order t...
We investigate spin transport in diffusive graphene nanoribbons with both clean and rough zigzag edg...
A large magnetoresistance (MR) effect of few-layers graphene between two non-magnetic metal electrod...