We theoretically investigate charge transport through electronic bands of a mesoscopic one-dimensional system, where interband transitions are coupled to a confined cavity mode, initially prepared close to its vacuum. This coupling leads to light-matter hybridization where the dressed fermionic bands interact via absorption and emission of dressed cavity photons. Using a self-consistent nonequilibrium Green's function method, we compute electronic transmissions and cavity photon spectra and demonstrate how light-matter coupling can lead to an enhancement of charge conductivity in the steady state. We find that depending on cavity loss rate, electronic bandwidth, and coupling strength, the dynamics involves either an individual or a collecti...
We show that exciton-type transport in certain materials can be dramatically modified by their inclu...
International audience−3 −2 −1 0 1 2 3 eV L /ωc −1.0 −0.5 0.0 0.5 1.0 −I/eΓ λ = 0.1 λ = 0.3 λ = 0.6 ...
In contrast to interband excitons in undoped quantum wells, doped quantum wells do not display sharp...
We theoretically investigate charge transport through electronic bands of a mesoscopic one-dimension...
We study the interplay between charge transport and light-matter interactions in a confined geometry...
International audienceUnderstanding the interaction between cavity photons and electronic nanocircui...
Recent scanning tunneling microscopy (STM) experiments reported single-molecule fluorescence induced...
Recent scanning tunneling microscopy (STM) experiments reported single-molecule fluorescence induced...
Recent scanning tunneling microscopy (STM) experiments reported single-molecule fluorescence induced...
Recent scanning tunneling microscopy (STM) experiments reported single-molecule fluorescence induced...
We show that strong electron-electron interactions in quantum materials can give rise to electronic ...
International audienceMicrowave cavities have been widely used to investigate the behavior of closed...
Microwave cavities have been widely used to investigate the behavior of closed few-level systems. He...
We investigate gain in microwave photonic cavities coupled to voltage-biased double quantum dot syst...
We investigate theoretically the properties of the photon state and the electronic transport in a sy...
We show that exciton-type transport in certain materials can be dramatically modified by their inclu...
International audience−3 −2 −1 0 1 2 3 eV L /ωc −1.0 −0.5 0.0 0.5 1.0 −I/eΓ λ = 0.1 λ = 0.3 λ = 0.6 ...
In contrast to interband excitons in undoped quantum wells, doped quantum wells do not display sharp...
We theoretically investigate charge transport through electronic bands of a mesoscopic one-dimension...
We study the interplay between charge transport and light-matter interactions in a confined geometry...
International audienceUnderstanding the interaction between cavity photons and electronic nanocircui...
Recent scanning tunneling microscopy (STM) experiments reported single-molecule fluorescence induced...
Recent scanning tunneling microscopy (STM) experiments reported single-molecule fluorescence induced...
Recent scanning tunneling microscopy (STM) experiments reported single-molecule fluorescence induced...
Recent scanning tunneling microscopy (STM) experiments reported single-molecule fluorescence induced...
We show that strong electron-electron interactions in quantum materials can give rise to electronic ...
International audienceMicrowave cavities have been widely used to investigate the behavior of closed...
Microwave cavities have been widely used to investigate the behavior of closed few-level systems. He...
We investigate gain in microwave photonic cavities coupled to voltage-biased double quantum dot syst...
We investigate theoretically the properties of the photon state and the electronic transport in a sy...
We show that exciton-type transport in certain materials can be dramatically modified by their inclu...
International audience−3 −2 −1 0 1 2 3 eV L /ωc −1.0 −0.5 0.0 0.5 1.0 −I/eΓ λ = 0.1 λ = 0.3 λ = 0.6 ...
In contrast to interband excitons in undoped quantum wells, doped quantum wells do not display sharp...