The coupling between electronic and nuclear degrees of freedom in low-dimensional, nanoscale systems plays a fundamental role in shaping many of their properties. Here, we report the disentanglement of axial and radial expansions of carbon nanotubes, and the direct role of electronic and vibrational excitations in determining such expansions. With subpicosecond and subpicometer resolutions, structural dynamics were explored by monitoring changes of the electron diffraction following an ultrafast optical excitation, whereas the transient behavior of the charge distribution was probed by time-resolved, electron-energy-loss spectroscopy. Our experimental results, and supporting density functional theory calculations, indicate that a population...
cited By 24International audienceThe electronic behavior of a radially collapsed armchair carbon nan...
Motivated by the experimental demonstration of the actuator action of single-walled carbon nanotubes...
Carbon nanotubes continue to surprise scientists with their novel properties. Recently we have disco...
The coupling between electronic and nuclear degrees of freedom in low-dimensional, nanoscale systems...
The coupling between electronic and nuclear degrees of freedom in low-dimensional, nanoscale systems...
The coupling between electronic and nuclear degrees of freedom in low-dimensional, nanoscale systems...
We investigate coupled excitonic and vibrational effects in carbon nanotubes using a time-dependent ...
While carbon nanotubes have technological potential as actuators, the underlying actuation mechanism...
We report the anisotropic atomic expansion dynamics of multi-walled carbon nanotubes, using 4D ele...
We present a detailed study of the vibrational properties of single wall carbon nanotubes (SWNTs). T...
We present a real-time investigation of ultra-fast carrier dynamics in single-wall carbon nanotube b...
One of challenging application of carbon nanotubes is nano-scaled electronic device, in which precis...
24 pages, 21 figures, submitted to Phys. Rev. BInternational audienceWe present a detailed study of ...
Vibrational dephasing of the lowest energy electronic excitations in the perfect (16,16) graphene na...
We have studied the electronic structure and charge-carrier dynamics of individual single-wall carbo...
cited By 24International audienceThe electronic behavior of a radially collapsed armchair carbon nan...
Motivated by the experimental demonstration of the actuator action of single-walled carbon nanotubes...
Carbon nanotubes continue to surprise scientists with their novel properties. Recently we have disco...
The coupling between electronic and nuclear degrees of freedom in low-dimensional, nanoscale systems...
The coupling between electronic and nuclear degrees of freedom in low-dimensional, nanoscale systems...
The coupling between electronic and nuclear degrees of freedom in low-dimensional, nanoscale systems...
We investigate coupled excitonic and vibrational effects in carbon nanotubes using a time-dependent ...
While carbon nanotubes have technological potential as actuators, the underlying actuation mechanism...
We report the anisotropic atomic expansion dynamics of multi-walled carbon nanotubes, using 4D ele...
We present a detailed study of the vibrational properties of single wall carbon nanotubes (SWNTs). T...
We present a real-time investigation of ultra-fast carrier dynamics in single-wall carbon nanotube b...
One of challenging application of carbon nanotubes is nano-scaled electronic device, in which precis...
24 pages, 21 figures, submitted to Phys. Rev. BInternational audienceWe present a detailed study of ...
Vibrational dephasing of the lowest energy electronic excitations in the perfect (16,16) graphene na...
We have studied the electronic structure and charge-carrier dynamics of individual single-wall carbo...
cited By 24International audienceThe electronic behavior of a radially collapsed armchair carbon nan...
Motivated by the experimental demonstration of the actuator action of single-walled carbon nanotubes...
Carbon nanotubes continue to surprise scientists with their novel properties. Recently we have disco...