Ballistic conductance of Bilayer Graphene Nanoribbons (BGNs) is concerned in this paper. Mathematical model and numerical solution of BGNs ballistic conductance is introduced as well as its analytical model in the degeneracy limit. Our method indicates that near the neutrality point the non-degenerate approximation can be properly used. In contrast, out of this boundary condition it is estimated to work in the degenerate regime. Moreover, it confirms that BGN conductance is temperature dependence near the neutrality point also minimum conductance is depended on temperature which increases by increasing temperature but beyond the neutrality point conductance is independent of temperature. Presented model shows good agreement by published exp...
A semi-classical electrodynamical model is derived to describe the electrical transport along graphe...
The tight-binding Hamiltonian model and the Green’s function formalism have been employed to calcula...
In this paper, our focus is on ABA trilayer graphene nanoribbon (TGN), in which the middle layer is ...
Ballistic conductance of Bilayer Graphene Nanoribbons (BGNs) is concerned in this paper. Mathematica...
Considering the importance of doing conductance studies, this manuscript describes the development o...
In this paper, our focus is on ABA trilayer graphene nanoribbon (TGN), in which the middle layer is ...
Bilayer graphene nanoribbon (BGN) with tunable band gap which can be controlled by an external elect...
Bilayer graphene nanoribbon (BGN) with tunable band gap which can be controlled by an external elect...
Many experimental measurements have been done on GNR conductance. In this paper, analytical model of...
We study numerically the effects of edge and bulk disorder on the conductance of graphene nanoribbon...
We study numerically the effects of edge and bulk disorder on the conductance of graphene nanoribbon...
Bilayer Graphene Nanoribbon (BGN) Carrier statistic in the non-degenerate and the degenerate limit i...
Abstract. We have used classical molecular dynamics based on the Brenner potential to calculate the ...
In this paper, our focus is on ABA trilayer graphene nanoribbon (TGN), in which the middle layer is ...
In this paper, our focus is on ABA trilayer graphene nanoribbon (TGN), in which the middle layer is ...
A semi-classical electrodynamical model is derived to describe the electrical transport along graphe...
The tight-binding Hamiltonian model and the Green’s function formalism have been employed to calcula...
In this paper, our focus is on ABA trilayer graphene nanoribbon (TGN), in which the middle layer is ...
Ballistic conductance of Bilayer Graphene Nanoribbons (BGNs) is concerned in this paper. Mathematica...
Considering the importance of doing conductance studies, this manuscript describes the development o...
In this paper, our focus is on ABA trilayer graphene nanoribbon (TGN), in which the middle layer is ...
Bilayer graphene nanoribbon (BGN) with tunable band gap which can be controlled by an external elect...
Bilayer graphene nanoribbon (BGN) with tunable band gap which can be controlled by an external elect...
Many experimental measurements have been done on GNR conductance. In this paper, analytical model of...
We study numerically the effects of edge and bulk disorder on the conductance of graphene nanoribbon...
We study numerically the effects of edge and bulk disorder on the conductance of graphene nanoribbon...
Bilayer Graphene Nanoribbon (BGN) Carrier statistic in the non-degenerate and the degenerate limit i...
Abstract. We have used classical molecular dynamics based on the Brenner potential to calculate the ...
In this paper, our focus is on ABA trilayer graphene nanoribbon (TGN), in which the middle layer is ...
In this paper, our focus is on ABA trilayer graphene nanoribbon (TGN), in which the middle layer is ...
A semi-classical electrodynamical model is derived to describe the electrical transport along graphe...
The tight-binding Hamiltonian model and the Green’s function formalism have been employed to calcula...
In this paper, our focus is on ABA trilayer graphene nanoribbon (TGN), in which the middle layer is ...