The effects of electric field on the carrier motion and drift velocity in nanowire (NW) are presented in this paper. When the electric field is applied in NW, the electron is expected to move in anti-parallel direction to the electric field. This is so-called randomness motion is transformed into streamlined motion in extremely high electric field. The normalized Fermi energy and relative electron population as a function of electric field are examined for various degeneracies. It was found that the electric field has lesser influence on the relative electron population with the increased degeneracy. The drift velocity in NW is shown to increase with electric field until it reaches the saturation velocity. Two approximations have been made ...
The carrier statistics in carbon nanotubes (CNTs) with nonparabolic energy spectrum is studied in or...
High-field electron transport properties in a two-dimensional nanolayer are studied by an applicatio...
Many studies on low-energy limit indicate that band energy of graphene nanoribbon research (GNR) is ...
The limitations on carrier (holes and electrons) drift due to high-field streamlining also randomly ...
International audienceWe have performed atomistic simulations of the phonon-limited high field carri...
The nanowires and nanotubes are being considered as the best candidates for high-speed applications....
Understanding of quantum limit in low dimensional devices helps to develop the new device types same...
We study the high-field transport behavior of a graphene nanoribbon in the degenerate and nondegener...
The intrinsic velocity is shown to be the ultimate limit to the saturation velocity in a very high e...
The carriers in a carbon nanotube (CNT), like in any quasi-1-dimensional (Q1D) nanostructure, have a...
Quantum kinetic transport under high electric fields is investigated with emphasis on the intracolli...
The carriers in a carbon nanotube (CNT), like in any quasi-1-dimensional (Q1D) nanostructure, have a...
The modeling of nano-ballistic carrier transport nature across the nanoscale channel of a MOSFET bas...
In this paper, we investigate the electron mobility in nanowire (NW) FETs operating under quasi-ball...
Electron transport in quasi-one-dimensional quantum wires under high electric fields is investigated...
The carrier statistics in carbon nanotubes (CNTs) with nonparabolic energy spectrum is studied in or...
High-field electron transport properties in a two-dimensional nanolayer are studied by an applicatio...
Many studies on low-energy limit indicate that band energy of graphene nanoribbon research (GNR) is ...
The limitations on carrier (holes and electrons) drift due to high-field streamlining also randomly ...
International audienceWe have performed atomistic simulations of the phonon-limited high field carri...
The nanowires and nanotubes are being considered as the best candidates for high-speed applications....
Understanding of quantum limit in low dimensional devices helps to develop the new device types same...
We study the high-field transport behavior of a graphene nanoribbon in the degenerate and nondegener...
The intrinsic velocity is shown to be the ultimate limit to the saturation velocity in a very high e...
The carriers in a carbon nanotube (CNT), like in any quasi-1-dimensional (Q1D) nanostructure, have a...
Quantum kinetic transport under high electric fields is investigated with emphasis on the intracolli...
The carriers in a carbon nanotube (CNT), like in any quasi-1-dimensional (Q1D) nanostructure, have a...
The modeling of nano-ballistic carrier transport nature across the nanoscale channel of a MOSFET bas...
In this paper, we investigate the electron mobility in nanowire (NW) FETs operating under quasi-ball...
Electron transport in quasi-one-dimensional quantum wires under high electric fields is investigated...
The carrier statistics in carbon nanotubes (CNTs) with nonparabolic energy spectrum is studied in or...
High-field electron transport properties in a two-dimensional nanolayer are studied by an applicatio...
Many studies on low-energy limit indicate that band energy of graphene nanoribbon research (GNR) is ...