We propose and demonstrate theoretically bright coherent radiation from a plasmonic nanoresonator powered by a single three-level quantum emitter. By introducing a dual-pump scheme in a Raman configuration for the three-level system, we overcome the fast decay of nanoplasmons and achieve macroscopic accumulation of nanoplasmons on the plasmonic nanoresonator for stimulated emission. We utilize the optical antenna effect for efficient radiation of the nanoplasmons and predict photon emission rates of 100 THz with up to 10 ps duration pulses and GHz repetition rates with the consideration of possible heating issue. We show that the ultrafast nature of the nanoscopic coherent source allows for operation with solid-state emitters at room temper...
International audiencePlasmonic superradiance originates from the plasmon mediated strong correlatio...
We report on a new class of optical antennas that shorten the excited-state lifetime of optical emit...
Plasmonics offers a unique opportunity to break the diffraction limit of light and bring photonic de...
We propose and demonstrate theoretically bright coherent radiation from a plasmonic nanoresonator po...
Efficient and bright single photon sources at room temperature are critical components for quantum i...
Efficient and bright single photon sources at room temperature are critical components for quantum i...
Efficient and bright single photon sources at room temperature are critical components for quantum i...
We make a step towards quantum nanoplasmonics: surface plasmon fields of a nanosystem are quantized ...
We report on a fundamentally new radiation phenomenon in nanostructures: emission of spatially coher...
We report on a fundamentally new radiation phenomenon in nanostructures: emission of spatially coher...
International audiencePlasmonic superradiance originates from the plasmon mediated strong correlatio...
Typical emitters such as molecules, quantum dots and semiconductor quantum wells have slow spontaneo...
Coherent control is an ingenious tactic to steer a system to a desired optimal state by tailoring th...
International audiencePlasmonic superradiance originates from the plasmon mediated strong correlatio...
Typical emitters such as molecules, quantum dots and semiconductor quantum wells have slow spontaneo...
International audiencePlasmonic superradiance originates from the plasmon mediated strong correlatio...
We report on a new class of optical antennas that shorten the excited-state lifetime of optical emit...
Plasmonics offers a unique opportunity to break the diffraction limit of light and bring photonic de...
We propose and demonstrate theoretically bright coherent radiation from a plasmonic nanoresonator po...
Efficient and bright single photon sources at room temperature are critical components for quantum i...
Efficient and bright single photon sources at room temperature are critical components for quantum i...
Efficient and bright single photon sources at room temperature are critical components for quantum i...
We make a step towards quantum nanoplasmonics: surface plasmon fields of a nanosystem are quantized ...
We report on a fundamentally new radiation phenomenon in nanostructures: emission of spatially coher...
We report on a fundamentally new radiation phenomenon in nanostructures: emission of spatially coher...
International audiencePlasmonic superradiance originates from the plasmon mediated strong correlatio...
Typical emitters such as molecules, quantum dots and semiconductor quantum wells have slow spontaneo...
Coherent control is an ingenious tactic to steer a system to a desired optimal state by tailoring th...
International audiencePlasmonic superradiance originates from the plasmon mediated strong correlatio...
Typical emitters such as molecules, quantum dots and semiconductor quantum wells have slow spontaneo...
International audiencePlasmonic superradiance originates from the plasmon mediated strong correlatio...
We report on a new class of optical antennas that shorten the excited-state lifetime of optical emit...
Plasmonics offers a unique opportunity to break the diffraction limit of light and bring photonic de...