Graphene nanoribbons provide an opportunity to integrate phase-coherent transport phenomena with nanoelectromechanical systems (NEMS). Due to the strain induced by a deflection in a graphene nanoribbon resonator, coherent electron transport and mechanical deformations couple. This coupling can be used for sensitive displacement detection in both armchair and zigzag graphene nanoribbon NEMS. Here it is shown that for ordered as well as disordered ribbon systems of length L, a strain epsilon similar to (w/L)(2) due to a deflection w leads to a relative change in conductance delta G/G similar to (w(2)/a(0)L), where a(0) approximate to 1.4 angstrom
We measure ballistic charge conductivity in strained suspended graphene and observe theoretically pr...
With the advent of atomically precise synthesis and consequent precise tailoring of their electronic...
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...
We investigate the effects of homogeneous and inhomogeneous deformations and edge disorder on the co...
The current-voltage characteristics of armchair graphene nanoribbons under a local uniaxial tension ...
Nanoelectromechanical systems constitute a class of devices lying at the interface between fundament...
We investigate the coherent electronic transport properties of square-shaped zigzag graphene nanocon...
With the advent of atomically precise synthesis and consequent precise tailoring of their electronic...
With the advent of atomically precise synthesis and consequent precise tailoring of their electronic...
The charge transport properties of zigzag graphene nanoribbons (ZGNRs) under uniaxial and shear stra...
We realize nanometer size constrictions in ballistic graphene nanoribbons grown on sidewalls of SiC ...
We argue that twisted graphene nanoribbons subjected to a transverse electric field can operate as a...
The electronic band structure and carrier density of strained armchair graphene nanoribbons (AGNRs) ...
Nanoelectromechanical systems (NEMS) have drawn considerable attention towards several sensing appli...
We measure ballistic charge conductivity in strained suspended graphene and observe theoretically pr...
With the advent of atomically precise synthesis and consequent precise tailoring of their electronic...
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...
We investigate the effects of homogeneous and inhomogeneous deformations and edge disorder on the co...
The current-voltage characteristics of armchair graphene nanoribbons under a local uniaxial tension ...
Nanoelectromechanical systems constitute a class of devices lying at the interface between fundament...
We investigate the coherent electronic transport properties of square-shaped zigzag graphene nanocon...
With the advent of atomically precise synthesis and consequent precise tailoring of their electronic...
With the advent of atomically precise synthesis and consequent precise tailoring of their electronic...
The charge transport properties of zigzag graphene nanoribbons (ZGNRs) under uniaxial and shear stra...
We realize nanometer size constrictions in ballistic graphene nanoribbons grown on sidewalls of SiC ...
We argue that twisted graphene nanoribbons subjected to a transverse electric field can operate as a...
The electronic band structure and carrier density of strained armchair graphene nanoribbons (AGNRs) ...
Nanoelectromechanical systems (NEMS) have drawn considerable attention towards several sensing appli...
We measure ballistic charge conductivity in strained suspended graphene and observe theoretically pr...
With the advent of atomically precise synthesis and consequent precise tailoring of their electronic...
In this thesis we theoretically investigate the influence of mechanical deformations on the electron...