The carriers in a carbon nanotube (CNT), like in any quasi-1-dimensional (Q1D) nanostructure, have analog energy spectrum only in the quasifree direction; while the other two Cartesian directions are quantum-confined leading to a digital (quantized) energy spectrum. We report the salient features of the mobility and saturation velocity controlling the charge transport in a semiconducting single-walled CNT (SWCNT) channel. The ultimate drift velocity in SWCNT due to the high-electric-field streaming is based on the asymmetrical distribution function that converts randomness in zero-field to a stream-lined one in a very high electric field. Specifically, we show that a higher mobility in an SWCNT does not necessarily lead to a higher saturat...
We present an order-N [O(N)] calculation method for the quantum electron transport of huge systems ...
We present a novel analytical modeling of a zigzag single-walled semiconducting carbon nanotube fiel...
In the last twenty years, due to technological advances, it has become possible to build, manipulate...
The carriers in a carbon nanotube (CNT), like in any quasi-1-dimensional (Q1D) nanostructure, have a...
The carrier statistics in carbon nanotubes (CNTs) with nonparabolic energy spectrum is studied in or...
The carrier statistics in carbon nanotubes (CNTs) with nonparabolic energy spectrum is studied in or...
Charge transfer mechanism in carbon nanotubes (CNTs) from the scattering-limited Ohmic transport to ...
Experimental projection of transport properties of semiconductor devices faces a challenge nowadays....
The field of carbon nano tubes (CNT) is an active area of research theoretically as well experimenta...
Understanding of quantum limit in low dimensional devices helps to develop the new device types same...
The low-energy-limit band structure of carbon nanotubes (CNTs) indicates parabolic behavior. However...
Abstract. The electron transport properties of a very long (20 micron) CVD-grown nanotube are report...
We investigate the quantum transport in different individual carbon nanotubes in the light of magnet...
Abstract: We have studied about a field effect transistor channel carrier mobility in semiconductin...
A general expression of the current-voltage characteristics of a ballistic nanowire field-effect tra...
We present an order-N [O(N)] calculation method for the quantum electron transport of huge systems ...
We present a novel analytical modeling of a zigzag single-walled semiconducting carbon nanotube fiel...
In the last twenty years, due to technological advances, it has become possible to build, manipulate...
The carriers in a carbon nanotube (CNT), like in any quasi-1-dimensional (Q1D) nanostructure, have a...
The carrier statistics in carbon nanotubes (CNTs) with nonparabolic energy spectrum is studied in or...
The carrier statistics in carbon nanotubes (CNTs) with nonparabolic energy spectrum is studied in or...
Charge transfer mechanism in carbon nanotubes (CNTs) from the scattering-limited Ohmic transport to ...
Experimental projection of transport properties of semiconductor devices faces a challenge nowadays....
The field of carbon nano tubes (CNT) is an active area of research theoretically as well experimenta...
Understanding of quantum limit in low dimensional devices helps to develop the new device types same...
The low-energy-limit band structure of carbon nanotubes (CNTs) indicates parabolic behavior. However...
Abstract. The electron transport properties of a very long (20 micron) CVD-grown nanotube are report...
We investigate the quantum transport in different individual carbon nanotubes in the light of magnet...
Abstract: We have studied about a field effect transistor channel carrier mobility in semiconductin...
A general expression of the current-voltage characteristics of a ballistic nanowire field-effect tra...
We present an order-N [O(N)] calculation method for the quantum electron transport of huge systems ...
We present a novel analytical modeling of a zigzag single-walled semiconducting carbon nanotube fiel...
In the last twenty years, due to technological advances, it has become possible to build, manipulate...