Carbon nanotubes are extensively investigated for their amazing mechanical and electronic properties. Optically, they are excellent candidates for on-demand single-photon sources because they can be electrically excited and they can emit anti-bunched light at room temperature in the telecoms bands. However, their emission efficiency is low, its origins remain unclear and the spectral shape of their photoluminescence is complicated. Abstract In this work, we build an original setup combining a confocal microscope and a fiber based micro-cavity which is both spatially and spectrally tunable. With this device, we observed the rise of cavity quantum electrodynamics effects by analyzing the evolution of the dipole-cavity coupling as a function o...
This manuscript presents an experimental study on pristine and functionalized single-wall carbon nan...
On-chip optical communication may increase drastically performances and consumption of communication...
Integration of nanomaterials within optical nanocavities provides a unique potential for flexible co...
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...
International audienceCondensed-matter emitters offer enriched cavity quantum electrodynamical effec...
This is the author accepted manuscript. The final version is available from American Chemical Societ...
The optical properties of carbon nanotubes are ideally described by the physicsof a one-dimensional ...
We show that strong light–matter coupling can be used to overcome a long-standing problem that has p...
This research was financially supported by the European Research Council under the European Union's ...
Optical properties of single-walled carbon nanotubes show strong signatures of one-dimensionnal conf...
Single-walled carbon nanotubes (SWCNTs) are considered for novel optoelectronic and quantum photonic...
We show that strong light–matter coupling can be used to overcome a long-standing problem that has p...
Exciton-polaritons are hybrid light–matter particles that form upon strong coupling of an excitonic ...
This manuscript presents an experimental study on pristine and functionalized single-wall carbon nan...
On-chip optical communication may increase drastically performances and consumption of communication...
Integration of nanomaterials within optical nanocavities provides a unique potential for flexible co...
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...
International audienceCondensed-matter emitters offer enriched cavity quantum electrodynamical effec...
This is the author accepted manuscript. The final version is available from American Chemical Societ...
The optical properties of carbon nanotubes are ideally described by the physicsof a one-dimensional ...
We show that strong light–matter coupling can be used to overcome a long-standing problem that has p...
This research was financially supported by the European Research Council under the European Union's ...
Optical properties of single-walled carbon nanotubes show strong signatures of one-dimensionnal conf...
Single-walled carbon nanotubes (SWCNTs) are considered for novel optoelectronic and quantum photonic...
We show that strong light–matter coupling can be used to overcome a long-standing problem that has p...
Exciton-polaritons are hybrid light–matter particles that form upon strong coupling of an excitonic ...
This manuscript presents an experimental study on pristine and functionalized single-wall carbon nan...
On-chip optical communication may increase drastically performances and consumption of communication...
Integration of nanomaterials within optical nanocavities provides a unique potential for flexible co...