Electron-electron interactions are significantly enhanced in one-dimensional systems(1), and single-walled carbon nanotubes provide a unique opportunity for studying such interactions and the related many-body effects in one dimension(2-4). However, single-walled nanotubes can have a wide range of diameters and hundreds of different structures, each defined by its chiral index (n,m)(5,6), where n and m are integers that can have values from zero up to 30 or more. Moreover, one-third of these structures are metals and two-thirds are semiconductors, and they display optical resonances at many different frequencies. Systematic studies of many-body effects in nanotubes would therefore benefit from the availability of a technique for identifying...
We consider a one-dimensional electron system, suitable for the description of the electronic correl...
©2002 American Institute of Physics. The electronic version of this article is the complete one and ...
A theoretical framework describing the carbon nanotubes interaction, involving two distinct approach...
Electron–electron interactions are significantly enhanced in one-dimensional systems1, and single-wa...
International audienceSingle-walled carbon nanotubes provide an ideal system for studying the proper...
Optical dispersion spectra at energies up to 30 eV play a vital role in understanding the chirality-...
After more than a quarter century's intense research and exploration for their distinctive phys...
Single-walled carbon nanotubes are uniquely identified by a pair of chirality indices (n, m), which ...
One dimensional systems offer a fascinating platform for investigating and understanding the collect...
International audienceWe have measured the low-energy excitonic transitions of chiral assigned indiv...
2 Electronic many-body correlation effects in one-dimensional (1D) systems such as carbon nanotubes ...
Electron-electron interactions and excitons in carbon nanotubes are locally measured by combining Sc...
Electronic many-body correlation effects in one-dimensional (1D) systems such as carbon nanotubes ha...
PosterWe examine the excitonic nature of high-lying optical transitions in single-walled carbon nano...
The transmission through side-contacted single-wall carbon nanotubes is investigated within the Land...
We consider a one-dimensional electron system, suitable for the description of the electronic correl...
©2002 American Institute of Physics. The electronic version of this article is the complete one and ...
A theoretical framework describing the carbon nanotubes interaction, involving two distinct approach...
Electron–electron interactions are significantly enhanced in one-dimensional systems1, and single-wa...
International audienceSingle-walled carbon nanotubes provide an ideal system for studying the proper...
Optical dispersion spectra at energies up to 30 eV play a vital role in understanding the chirality-...
After more than a quarter century's intense research and exploration for their distinctive phys...
Single-walled carbon nanotubes are uniquely identified by a pair of chirality indices (n, m), which ...
One dimensional systems offer a fascinating platform for investigating and understanding the collect...
International audienceWe have measured the low-energy excitonic transitions of chiral assigned indiv...
2 Electronic many-body correlation effects in one-dimensional (1D) systems such as carbon nanotubes ...
Electron-electron interactions and excitons in carbon nanotubes are locally measured by combining Sc...
Electronic many-body correlation effects in one-dimensional (1D) systems such as carbon nanotubes ha...
PosterWe examine the excitonic nature of high-lying optical transitions in single-walled carbon nano...
The transmission through side-contacted single-wall carbon nanotubes is investigated within the Land...
We consider a one-dimensional electron system, suitable for the description of the electronic correl...
©2002 American Institute of Physics. The electronic version of this article is the complete one and ...
A theoretical framework describing the carbon nanotubes interaction, involving two distinct approach...