We investigate the effects of homogeneous and inhomogeneous deformations and edge disorder on the conductance of gated graphene nanoribbons. Under increasing homogeneous strain the conductance of such devices initially decreases before it acquires a resonance structure and, finally, becomes completely suppressed at higher strain. Edge disorder induces mode mixing in the contact regions, which can restore the conductance to its ballistic value. The valley-antisymmetric pseudomagnetic field induced by inhomogeneous deformations leads to the formation of additional resonance states, which originate either from the coupling into Fabry-Pérot states that extend through the system or from the formation of states that are localized near the contact...
We discuss the physics of pseudomagnetic field,s which can be induced in graphene by applying strain...
The electronic band structure and carrier density of strained armchair graphene nanoribbons (AGNRs) ...
Graphene, a single atomic layer of graphite, has many exciting electronic and mechanical properties....
In inhomogeneously strained graphene, low-energy electrons experience a valley-antisymmetric pseudom...
In this thesis we theoretically investigate the influence of mechanical deformations on the electron...
Graphene nanoribbons provide an opportunity to integrate phase-coherent transport phenomena with nan...
The current-voltage characteristics of armchair graphene nanoribbons under a local uniaxial tension ...
Nonuniform elastic strain is known to induce pseudo-Landau levels in Dirac materials. But these pseu...
Wereport on mesoscopic transport fingerprints in disordered graphene caused by strain-field induced ...
As a canonical response to the applied magnetic field, the electronic states of a metal are fundamen...
The effects of tensile strain on the current-voltage (I-V) characteristics of hydrogenated-edge armc...
Structural distortions in nano-materials can induce dramatic changes in their electronic properties....
Structural distortions in nano-materials can induce dramatic changes in their electronic properties....
arXiv:1607.07300v1We report on mesoscopic transport fingerprints in disordered graphene caused by st...
Graphene nanoribbons provide an opportunity to integrate phase-coherent transport phenomena with nan...
We discuss the physics of pseudomagnetic field,s which can be induced in graphene by applying strain...
The electronic band structure and carrier density of strained armchair graphene nanoribbons (AGNRs) ...
Graphene, a single atomic layer of graphite, has many exciting electronic and mechanical properties....
In inhomogeneously strained graphene, low-energy electrons experience a valley-antisymmetric pseudom...
In this thesis we theoretically investigate the influence of mechanical deformations on the electron...
Graphene nanoribbons provide an opportunity to integrate phase-coherent transport phenomena with nan...
The current-voltage characteristics of armchair graphene nanoribbons under a local uniaxial tension ...
Nonuniform elastic strain is known to induce pseudo-Landau levels in Dirac materials. But these pseu...
Wereport on mesoscopic transport fingerprints in disordered graphene caused by strain-field induced ...
As a canonical response to the applied magnetic field, the electronic states of a metal are fundamen...
The effects of tensile strain on the current-voltage (I-V) characteristics of hydrogenated-edge armc...
Structural distortions in nano-materials can induce dramatic changes in their electronic properties....
Structural distortions in nano-materials can induce dramatic changes in their electronic properties....
arXiv:1607.07300v1We report on mesoscopic transport fingerprints in disordered graphene caused by st...
Graphene nanoribbons provide an opportunity to integrate phase-coherent transport phenomena with nan...
We discuss the physics of pseudomagnetic field,s which can be induced in graphene by applying strain...
The electronic band structure and carrier density of strained armchair graphene nanoribbons (AGNRs) ...
Graphene, a single atomic layer of graphite, has many exciting electronic and mechanical properties....