We demonstrate generation of a pulsed stream of electrically triggered single photons in resonance fluorescence, by applying high frequency electrical pulses to a single quantum dot in a p-i-n diode under resonant laser excitation. Single photon emission was verified, with the probability of multiple photon emission reduced to 2.8%. We show that despite the presence of charge noise in the emission spectrum of the dot, resonant excitation acts as a “filter” to generate narrow bandwidth photons
We describe an electrically driven single photon source consisting of a single InAs/GaAs quantum dot...
For scalable applications of optical quantum information it is desirable to have a well controlled s...
Single photons are attractive candidates of quantum bits (qubits) for quantum computation and are th...
We demonstrate generation of a pulsed stream of electrically triggered single photons in resonance f...
We have realized an ultrafast diode containing a single quantum dot, whose transitions can be Stark ...
Electroluminescence from a single quantum dot within the intrinsic region of a p-i-n junction is sho...
Electroluminescence from a single quantum dot within the intrinsic region of a p-i-n junction is sho...
We present a demonstration of single photon emission from an entirely electrically driven resonant i...
A key ingredient for quantum photonic technologies is an on-demand source of indistinguishable singl...
International audienceSemiconductor quantum dots (QDs) are commonly considered as artificial atoms d...
International audienceWe demonstrate systematic resonance fluorescence recovery with near-unity emis...
Scalable photonic quantum technologies require on-demand single-photon sources with simultaneously h...
Employing the ultrafast control of electronic states of a semiconductor quantum dot in a cavity, we ...
This is the author accepted manuscript. The final version is available on open access from American ...
Communication oraleInternational audienceSingle photon emission is one of the most striking optical ...
We describe an electrically driven single photon source consisting of a single InAs/GaAs quantum dot...
For scalable applications of optical quantum information it is desirable to have a well controlled s...
Single photons are attractive candidates of quantum bits (qubits) for quantum computation and are th...
We demonstrate generation of a pulsed stream of electrically triggered single photons in resonance f...
We have realized an ultrafast diode containing a single quantum dot, whose transitions can be Stark ...
Electroluminescence from a single quantum dot within the intrinsic region of a p-i-n junction is sho...
Electroluminescence from a single quantum dot within the intrinsic region of a p-i-n junction is sho...
We present a demonstration of single photon emission from an entirely electrically driven resonant i...
A key ingredient for quantum photonic technologies is an on-demand source of indistinguishable singl...
International audienceSemiconductor quantum dots (QDs) are commonly considered as artificial atoms d...
International audienceWe demonstrate systematic resonance fluorescence recovery with near-unity emis...
Scalable photonic quantum technologies require on-demand single-photon sources with simultaneously h...
Employing the ultrafast control of electronic states of a semiconductor quantum dot in a cavity, we ...
This is the author accepted manuscript. The final version is available on open access from American ...
Communication oraleInternational audienceSingle photon emission is one of the most striking optical ...
We describe an electrically driven single photon source consisting of a single InAs/GaAs quantum dot...
For scalable applications of optical quantum information it is desirable to have a well controlled s...
Single photons are attractive candidates of quantum bits (qubits) for quantum computation and are th...