Copyright © 2005 American Physical SocietyElectron motion in a (n,1) carbon nanotube is shown to correspond to a de Broglie wave propagating along a helical line on the nanotube wall. This helical motion leads to periodicity of the electron potential energy in the presence of an electric field normal to the nanotube axis. The period of this potential is proportional to the nanotube radius and is greater than the interatomic distance in the nanotube. As a result, the behavior of an electron in a (n,1) nanotube subject to a transverse electric field is similar to that in a semiconductor superlattice. In particular, Bragg scattering of electrons from the long-range periodic potential results in the opening of gaps in the energy spectrum of the...
Band structure calculations show that carbon nanotubes exist as either metals or semiconductors, dep...
[[abstract]]Ab initio calculations show that the band-gap modulation of semiconducting carbon nanotu...
We investigate the quantum transport in different individual carbon nanotubes in the light of magnet...
We introduce two simple models to study the effect of a spatially localized transverse electric fiel...
We propose a method to modulate the bandgaps in narrow-gap carbon nanotubes using a transverse elect...
This chapter focuses on the general theory of the electron transport properties of carbon nanotubes,...
Recent experiments have shown that carbon nanotubes exhibit excellent electron field emisson propert...
[[abstract]]The electronic structures of carbon (C) and boron nitride (BN) nanotubes under a transve...
Carbon nanotubes (CNTs) are recently discovered materials made by rolled sheets of graphene of diame...
Projected to be a material of scientific legend, carbon nanotubes (CNTs) exhibit a variety of intrig...
We report the one-electron spectrum and eigenstates of infinite achiral and chiral $(2m,m)$ carbon n...
The transmission through side-contacted single-wall carbon nanotubes is investigated within the Land...
An integrated cohesive band structure of carbon nanotubes (CNTs) applicable to all chirality directi...
Subjecting a nanohelix to a transverse electric field gives rise to superlattice behavior with tunab...
The electronic structures of carbon (C) and boron nitride (BN) nanotubes under a transverse electric...
Band structure calculations show that carbon nanotubes exist as either metals or semiconductors, dep...
[[abstract]]Ab initio calculations show that the band-gap modulation of semiconducting carbon nanotu...
We investigate the quantum transport in different individual carbon nanotubes in the light of magnet...
We introduce two simple models to study the effect of a spatially localized transverse electric fiel...
We propose a method to modulate the bandgaps in narrow-gap carbon nanotubes using a transverse elect...
This chapter focuses on the general theory of the electron transport properties of carbon nanotubes,...
Recent experiments have shown that carbon nanotubes exhibit excellent electron field emisson propert...
[[abstract]]The electronic structures of carbon (C) and boron nitride (BN) nanotubes under a transve...
Carbon nanotubes (CNTs) are recently discovered materials made by rolled sheets of graphene of diame...
Projected to be a material of scientific legend, carbon nanotubes (CNTs) exhibit a variety of intrig...
We report the one-electron spectrum and eigenstates of infinite achiral and chiral $(2m,m)$ carbon n...
The transmission through side-contacted single-wall carbon nanotubes is investigated within the Land...
An integrated cohesive band structure of carbon nanotubes (CNTs) applicable to all chirality directi...
Subjecting a nanohelix to a transverse electric field gives rise to superlattice behavior with tunab...
The electronic structures of carbon (C) and boron nitride (BN) nanotubes under a transverse electric...
Band structure calculations show that carbon nanotubes exist as either metals or semiconductors, dep...
[[abstract]]Ab initio calculations show that the band-gap modulation of semiconducting carbon nanotu...
We investigate the quantum transport in different individual carbon nanotubes in the light of magnet...