We examine the excitonic nature of the E33 optical transition of the individual free-standing index-identified (23, 7) single-walled carbon nanotube by means of the measurements of its radial-breathing-mode and G-mode Raman excitation profiles. We confirm that it is impossible to determine unambiguously the nature of its E33 optical transition (excitonic vs band to band) based only on the excitation profiles. Nevertheless, by combining Raman scattering, Rayleigh scattering, and optical absorption measurements on strictly the same individual (23, 7) single-walled carbon nanotube, we show that the absorption, Rayleigh spectra, and Raman excitation profiles of the longitudinal and transverse G modes are best fitted by considering the nature of...
Precise determination of (n,m) abundance and their optical spectroscopy characteristics of single wa...
International audienceThe optical properties of single-wall carbon nanotubes are very promising for ...
Single wall carbon nanotubes (SWNT’s) are cylindrical nanostructures, one carbon atom thick, about 2...
Carbon nanotubes are one-dimensional nanoscale systems with strongly pronounced chirality-dependent ...
Recently, we determined using spatial modulation spectroscopy, over a broad optical spectral range, ...
Optical transition energies are widely used for providing experimental insight into the electronic ...
Resonant Raman spectroscopy of single carbon nanotubes suspended across trenches displays red-shifts...
International audienceIn this paper, we will present a brief review of linear and nonlinear optical ...
We study the optical properties of a single, semiconducting single-walled carbon nanotube (CNT) that...
Resonant Raman spectroscopy was performed to study electron–phonon coupling in single-walled carbon ...
Single-walled carbon nanotubes (SWCNTs) are promising candidates for a variety of electronic and opt...
For the past three decades, newly discovered carbon nanostructures such as fullerenes, graphene and ...
International audienceThe Raman-active radial breathing modes ͑RBM͒ and tangential modes ͑TM͒ of sin...
Optical transition energies in carbon nanotubes can be obtained with high precision from Raman excit...
[[abstract]]We report excitation wavelength and temperature dependences of Raman spectra in single-w...
Precise determination of (n,m) abundance and their optical spectroscopy characteristics of single wa...
International audienceThe optical properties of single-wall carbon nanotubes are very promising for ...
Single wall carbon nanotubes (SWNT’s) are cylindrical nanostructures, one carbon atom thick, about 2...
Carbon nanotubes are one-dimensional nanoscale systems with strongly pronounced chirality-dependent ...
Recently, we determined using spatial modulation spectroscopy, over a broad optical spectral range, ...
Optical transition energies are widely used for providing experimental insight into the electronic ...
Resonant Raman spectroscopy of single carbon nanotubes suspended across trenches displays red-shifts...
International audienceIn this paper, we will present a brief review of linear and nonlinear optical ...
We study the optical properties of a single, semiconducting single-walled carbon nanotube (CNT) that...
Resonant Raman spectroscopy was performed to study electron–phonon coupling in single-walled carbon ...
Single-walled carbon nanotubes (SWCNTs) are promising candidates for a variety of electronic and opt...
For the past three decades, newly discovered carbon nanostructures such as fullerenes, graphene and ...
International audienceThe Raman-active radial breathing modes ͑RBM͒ and tangential modes ͑TM͒ of sin...
Optical transition energies in carbon nanotubes can be obtained with high precision from Raman excit...
[[abstract]]We report excitation wavelength and temperature dependences of Raman spectra in single-w...
Precise determination of (n,m) abundance and their optical spectroscopy characteristics of single wa...
International audienceThe optical properties of single-wall carbon nanotubes are very promising for ...
Single wall carbon nanotubes (SWNT’s) are cylindrical nanostructures, one carbon atom thick, about 2...