Many studies on low-energy limit indicate that band energy of graphene nanoribbon research (GNR) is linear while it illustrates parabolic characteristic with square root approximation model near the Fermi point (k = 0) and non-parabolic characteristic when wave vector is far away from Fermi point . We report that in parabolic and non-parabolic conditions charge transport is controlled by the saturation velocity similar to the conventional one-dimensional device. Also, we claim that at narrower bandwidth the intrinsic velocity approaches saturation faster because wider widths have lighter effective mass, which leads to higher average velocity. The intrinsic velocity is approximated to be thermal velocity in nondegenerate regime and Fermi vel...
Bilayer Graphene Nanoribbon (BGN) Carrier statistic in the non-degenerate and the degenerate limit i...
We observe that carriers in graphene can be accelerated to the Fermi velocity without heating the la...
We investigate magnetotransport through graphene nanoribbons as a function of gate and bias voltage,...
Many experimental measurements have been done on GNR conductance. In this paper, analytical model of...
The carrier mobility in low-field specifically in parabolic energy region of one-dimensional graphen...
We study the high-field transport behavior of a graphene nanoribbon in the degenerate and nondegener...
In this letter, we investigate the transport properties of one-dimensional semiconducting Graphene n...
In this paper we investigate the band structure of graphene nano-ribbons and the current density. A ...
In this paper we investigate the band structure of graphene nano-ribbons and the current density. A ...
Carrier velocity is one of the most significant characteristics for analytical modeling of field eff...
In this paper we follow a semiclassical approach based on the Boltzmann Transport Equation (BTE) to ...
Bilayer graphene nanoribbon (BGN) with tunable band gap which can be controlled by an external elect...
We present an analysis of the electronic and plasmonic behavior of periodic planar distributions of ...
High-field electron transport properties in a two-dimensional nanolayer are studied by an applicatio...
The semiconducting electronic properties of graphene nanoscroll (GNS) are very much related to its g...
Bilayer Graphene Nanoribbon (BGN) Carrier statistic in the non-degenerate and the degenerate limit i...
We observe that carriers in graphene can be accelerated to the Fermi velocity without heating the la...
We investigate magnetotransport through graphene nanoribbons as a function of gate and bias voltage,...
Many experimental measurements have been done on GNR conductance. In this paper, analytical model of...
The carrier mobility in low-field specifically in parabolic energy region of one-dimensional graphen...
We study the high-field transport behavior of a graphene nanoribbon in the degenerate and nondegener...
In this letter, we investigate the transport properties of one-dimensional semiconducting Graphene n...
In this paper we investigate the band structure of graphene nano-ribbons and the current density. A ...
In this paper we investigate the band structure of graphene nano-ribbons and the current density. A ...
Carrier velocity is one of the most significant characteristics for analytical modeling of field eff...
In this paper we follow a semiclassical approach based on the Boltzmann Transport Equation (BTE) to ...
Bilayer graphene nanoribbon (BGN) with tunable band gap which can be controlled by an external elect...
We present an analysis of the electronic and plasmonic behavior of periodic planar distributions of ...
High-field electron transport properties in a two-dimensional nanolayer are studied by an applicatio...
The semiconducting electronic properties of graphene nanoscroll (GNS) are very much related to its g...
Bilayer Graphene Nanoribbon (BGN) Carrier statistic in the non-degenerate and the degenerate limit i...
We observe that carriers in graphene can be accelerated to the Fermi velocity without heating the la...
We investigate magnetotransport through graphene nanoribbons as a function of gate and bias voltage,...