Here we present a parametrized tight-binding (TB) model to calculate the band structure of single-wall carbon nanotubes (SWNTs). On the basis of ab initio calculations we fit the band structure of nanotubes of different radii with results obtained with an orthogonal TB model to third neighbors, which includes the effects of orbital hybridization by means of a reduced set of parameters. The functional form for the dependence of these parameters on the radius of the tubes can be used to interpolate appropriate TB parameters for different SWNTs and to study the effects of curvature on their electronic properties. Additionally, we have shown that the model gives an appropriate description of the optical spectra of SWNTs, which can be useful for...
We discuss how tight-binding band-structure calculations with a chirality- and diameter-dependent ne...
single wall carbon nanotubes over a wide diameter range are studied separately to find their band ga...
We discuss how tight-binding band-structure calculations with a chirality- and diameter-dependent ne...
Here we present a parametrized tight-binding (TB) model to calculate the band structure of single-wa...
The electronic structure and optical properties of single-wall carbon nanotubes (SWCN's) have been s...
In the following paper we present a complete analytical model that predicts the band-gap (E-g) of Si...
We present a visual, intuitive connection between optical absorption line shapes and the underlying ...
We present a visual, intuitive connection between optical absorption line shapes and the underlying ...
Narrow diameter tubes and especially (6,5) tubes with a diameter of 0.75 nm are currently one of the...
Narrow diameter tubes and especially (6,5) tubes with a diameter of 0.75 nm are currently one of the...
We present a visual, intuitive connection between optical absorption line shapes and the underlying ...
We perform a comprehensive theoretical study of electronic band gaps of semiconducting single-walled...
A tight-binding (TB) treatment with the inclusion of d orbitals is applied to the electronic structu...
We discuss how tight-binding band-structure calculations with a chirality- and diameter-dependent ne...
We studied the electronic band structure and optical absorption of carbon nanotubes with small diame...
We discuss how tight-binding band-structure calculations with a chirality- and diameter-dependent ne...
single wall carbon nanotubes over a wide diameter range are studied separately to find their band ga...
We discuss how tight-binding band-structure calculations with a chirality- and diameter-dependent ne...
Here we present a parametrized tight-binding (TB) model to calculate the band structure of single-wa...
The electronic structure and optical properties of single-wall carbon nanotubes (SWCN's) have been s...
In the following paper we present a complete analytical model that predicts the band-gap (E-g) of Si...
We present a visual, intuitive connection between optical absorption line shapes and the underlying ...
We present a visual, intuitive connection between optical absorption line shapes and the underlying ...
Narrow diameter tubes and especially (6,5) tubes with a diameter of 0.75 nm are currently one of the...
Narrow diameter tubes and especially (6,5) tubes with a diameter of 0.75 nm are currently one of the...
We present a visual, intuitive connection between optical absorption line shapes and the underlying ...
We perform a comprehensive theoretical study of electronic band gaps of semiconducting single-walled...
A tight-binding (TB) treatment with the inclusion of d orbitals is applied to the electronic structu...
We discuss how tight-binding band-structure calculations with a chirality- and diameter-dependent ne...
We studied the electronic band structure and optical absorption of carbon nanotubes with small diame...
We discuss how tight-binding band-structure calculations with a chirality- and diameter-dependent ne...
single wall carbon nanotubes over a wide diameter range are studied separately to find their band ga...
We discuss how tight-binding band-structure calculations with a chirality- and diameter-dependent ne...