International audienceAbstract The control of light-matter interaction at the most elementary level has become an important resource for quantum technologies. Implementing such interfaces in the THz range remains an outstanding problem. Here, we couple a single electron trapped in a carbon nanotube quantum dot to a THz resonator. The resulting light-matter interaction reaches the deep strong coupling regime that induces a THz energy gap in the carbon nanotube solely by the vacuum fluctuations of the THz resonator. This is directly confirmed by transport measurements. Such a phenomenon which is the exact counterpart of inhibition of spontaneous emission in atomic physics opens the path to the readout of non-classical states of light using el...
International audienceGraphene has recently emerged as an important material for optoelectronic appl...
We study interbanddipole transitions across curvature-induced narrow gaps in quasi-metallic single-w...
We use time-dependent quantum wavepacket methods to simulate ballistic electron transport in a singl...
International audienceAbstract The control of light-matter interaction at the most elementary level ...
Terahertz technology has recently emerged as a highly sought-after and versatile scientific tool in ...
arXiv:2006.10837v2Generating and detecting radiation in the technologically relevant range of the so...
In the last ten years, research has been devoted to the development of hybrid architecture mesoscopi...
We have investigated the electronic structures of metallic carbon nanotube quantum dots (CNT QDs) by...
In this joint experimental and theoretical study we demonstrate coherent control of the optical fiel...
Ballistic electrical currents are optically injected into aligned single-walled carbon nanotubes and...
We calculate the exciton binding energy in single-walled carbon nanotubes with narrow band gaps, acc...
We propose and justify several proposals utilizing unique electronic properties of carbon nanotubes ...
We investigate theoretically the feasibility of amplification of terahertz radiation in aligned achi...
We formulate and justify several proposals utilizing unique electronic properties of carbon nanotube...
The THz field quantum dot sensors (T-sensors) made of graphene and carbon nanotubes have a very low ...
International audienceGraphene has recently emerged as an important material for optoelectronic appl...
We study interbanddipole transitions across curvature-induced narrow gaps in quasi-metallic single-w...
We use time-dependent quantum wavepacket methods to simulate ballistic electron transport in a singl...
International audienceAbstract The control of light-matter interaction at the most elementary level ...
Terahertz technology has recently emerged as a highly sought-after and versatile scientific tool in ...
arXiv:2006.10837v2Generating and detecting radiation in the technologically relevant range of the so...
In the last ten years, research has been devoted to the development of hybrid architecture mesoscopi...
We have investigated the electronic structures of metallic carbon nanotube quantum dots (CNT QDs) by...
In this joint experimental and theoretical study we demonstrate coherent control of the optical fiel...
Ballistic electrical currents are optically injected into aligned single-walled carbon nanotubes and...
We calculate the exciton binding energy in single-walled carbon nanotubes with narrow band gaps, acc...
We propose and justify several proposals utilizing unique electronic properties of carbon nanotubes ...
We investigate theoretically the feasibility of amplification of terahertz radiation in aligned achi...
We formulate and justify several proposals utilizing unique electronic properties of carbon nanotube...
The THz field quantum dot sensors (T-sensors) made of graphene and carbon nanotubes have a very low ...
International audienceGraphene has recently emerged as an important material for optoelectronic appl...
We study interbanddipole transitions across curvature-induced narrow gaps in quasi-metallic single-w...
We use time-dependent quantum wavepacket methods to simulate ballistic electron transport in a singl...