We compare experimental one- and two-photon luminescence excitation spectra of single-walled carbon nanotubes at room temperature to ab initio calculations. The experimental spectra reveal a Rydberg-like series of excitonic states. The energy splitting between these states is a clear fingerprint of excitonic correlations in carbon nanotubes. From those spectra, we derive exciton binding energies of 0.3-0.4 eV for nanotubes with diameters between 6.8 angstrom and 9.0 angstrom. These energies are in quantitative agreement with our nanotubes with diameters between 6.8 angstrom and 9.0 angstrom. These energies are in quantitative agreement with our theoretical calculations, which predict the symmetries of the relevant excitonic wave functions a...
We studied the temperature and excitation intensity dependence of exciton luminescence in individual...
We studied the exciton energy transfer in pairs of semiconducting nanotubes using high-resolution op...
The binding energies and sizes of excitons, and energy splitting of the bright-dark excitons in sing...
We compare experimental one- and two-photon luminescence excitation spectra of single-walled carbon ...
Excitonic effects in the linear and nonlinear optical properties of single-walled carbon nanotubes a...
One- and two-photon luminescence excitation spectra, showing a series of excitonic states, are compa...
We present two-photon excitation luminescence experiments on carbon nanotubes which show the exciton...
We present two-photon excitation luminescence experiments on carbon nanotubes which show the exci-to...
International audienceIn this paper, we will present a brief review of linear and nonlinear optical ...
We show that new low-energy photoluminescence (PL) bands can be created in the spectra of semiconduc...
We report studies of the temperature dependence of the photoluminescence efficiency of single walled...
Excitonic states of single-walled carbon nanotubes (SWNTs) have usually been calculated using many-b...
ince the first measurements of photo-luminescence (PL) of single-walled carbon nanotubes,1 the quest...
We review the main characteristics of optical excitations of semiconductor nanotubes, as obtained fr...
SUMMARY We show that new low-energy photoluminescence (PL) bands can be created in semiconducting ...
We studied the temperature and excitation intensity dependence of exciton luminescence in individual...
We studied the exciton energy transfer in pairs of semiconducting nanotubes using high-resolution op...
The binding energies and sizes of excitons, and energy splitting of the bright-dark excitons in sing...
We compare experimental one- and two-photon luminescence excitation spectra of single-walled carbon ...
Excitonic effects in the linear and nonlinear optical properties of single-walled carbon nanotubes a...
One- and two-photon luminescence excitation spectra, showing a series of excitonic states, are compa...
We present two-photon excitation luminescence experiments on carbon nanotubes which show the exciton...
We present two-photon excitation luminescence experiments on carbon nanotubes which show the exci-to...
International audienceIn this paper, we will present a brief review of linear and nonlinear optical ...
We show that new low-energy photoluminescence (PL) bands can be created in the spectra of semiconduc...
We report studies of the temperature dependence of the photoluminescence efficiency of single walled...
Excitonic states of single-walled carbon nanotubes (SWNTs) have usually been calculated using many-b...
ince the first measurements of photo-luminescence (PL) of single-walled carbon nanotubes,1 the quest...
We review the main characteristics of optical excitations of semiconductor nanotubes, as obtained fr...
SUMMARY We show that new low-energy photoluminescence (PL) bands can be created in semiconducting ...
We studied the temperature and excitation intensity dependence of exciton luminescence in individual...
We studied the exciton energy transfer in pairs of semiconducting nanotubes using high-resolution op...
The binding energies and sizes of excitons, and energy splitting of the bright-dark excitons in sing...