International audienceCondensed-matter emitters offer enriched cavity quantum electrodynamical effects due to the coupling to external degrees of freedom. In the case of carbon nanotubes, a very peculiar coupling between localized excitons and the one-dimensional acoustic phonon modes can be achieved, which gives rise to pronounced phonon wings in the luminescence spectrum. By coupling an individual nanotube to a tunable optical microcavity, we show that this peculiar exciton–phonon coupling is a valuable resource to enlarge the tuning range of the single-photon source while keeping an excellent exciton-photon coupling efficiency and spectral purity. Using the unique flexibility of our scanning fiber cavity, we are able to measure the effic...
International audienceIn this paper, we will present a brief review of linear and nonlinear optical ...
Integration of nanomaterials within optical nanocavities provides a unique potential for flexible co...
Progress in quantum computing and quantum cryptography requires efficient, electrically triggered, s...
Carbon nanotubes are extensively investigated for their amazing mechanical and electronic properties...
Carbon nanotubes are extensively investigated for their amazing mechanical and electronic properties...
The goal of this thesis is to build a single photon source tunable in telecom O-band based on carbon...
We show that strong light–matter coupling can be used to overcome a long-standing problem that has p...
This is the author accepted manuscript. The final version is available from American Chemical Societ...
We show that strong light–matter coupling can be used to overcome a long-standing problem that has p...
International audienceCarbon nanotubes are quantum sources whose emission can be tuned at telecommun...
We present two-photon excitation luminescence experiments on carbon nanotubes which show the exciton...
Understanding and controlling exciton–phonon interactions in carbon nanotubes has important implicat...
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...
We discuss how excitons can affect the generation of coherent radial breathing modes in the ultrafas...
International audienceIn this paper, we will present a brief review of linear and nonlinear optical ...
Integration of nanomaterials within optical nanocavities provides a unique potential for flexible co...
Progress in quantum computing and quantum cryptography requires efficient, electrically triggered, s...
Carbon nanotubes are extensively investigated for their amazing mechanical and electronic properties...
Carbon nanotubes are extensively investigated for their amazing mechanical and electronic properties...
The goal of this thesis is to build a single photon source tunable in telecom O-band based on carbon...
We show that strong light–matter coupling can be used to overcome a long-standing problem that has p...
This is the author accepted manuscript. The final version is available from American Chemical Societ...
We show that strong light–matter coupling can be used to overcome a long-standing problem that has p...
International audienceCarbon nanotubes are quantum sources whose emission can be tuned at telecommun...
We present two-photon excitation luminescence experiments on carbon nanotubes which show the exciton...
Understanding and controlling exciton–phonon interactions in carbon nanotubes has important implicat...
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...
We discuss how excitons can affect the generation of coherent radial breathing modes in the ultrafas...
International audienceIn this paper, we will present a brief review of linear and nonlinear optical ...
Integration of nanomaterials within optical nanocavities provides a unique potential for flexible co...
Progress in quantum computing and quantum cryptography requires efficient, electrically triggered, s...