A light source that emits single photons at well-defined times and into a well-defined mode would be a decisive asset for quantum information processing, quantum metrology, and sub-shot-noise detection of absorption. One of the central challenges in the realization of such a deterministic device based on a single quantum emitter concerns the collection of the photons, which are radiated into a 4 pi solid angle. Here, we present the fabrication and characterization of an optical antenna designed to convert the dipolar radiation of an arbitrarily oriented quantum emitter to a directional beam with more than 99% efficiency. Our approach is extremely versatile and can be used for more efficient detection of nanoscopic emitters ranging from semi...
By directing light, optical antennas can enhance light-matter interaction and improve the efficiency...
Nanoscale single-photon emitters behave generally as dipoles. Here, we demonstrate multipolar and un...
We exploit concepts from plasmonics and cavity quantum electrodynamics to devise new optical antenna...
A light source that emits single photons at well-defined times and into a well-defined mode would be...
In a previous paper [Nat. Photon. 5, 166 ( 2011)], we reported on a planar dielectric antenna that a...
In a previous paper [Nat. Photon. 5, 166 ( 2011)], we reported on a planar dielectric antenna that a...
Single emitters have been considered as sources of single photons in various contexts, including cry...
Single emitters have been considered as sources of single photons in various contexts, including cry...
Single emitters have been considered as sources of single photons in various contexts such as crypto...
We discuss the use of optical antennas for the modification of the radiative properties of single em...
We discuss the use of optical antennas for the modification of the radiative properties of single em...
Nanoscale quantum emitters are key elements in quantum optics and sensing. However, efficient optica...
\u3cp\u3eOptical antennas are nanoscale versions of radio antennas and have emerged in recent years ...
A main promise of the field of physics called "nanophotonics" that deals with nanotechnology to cont...
We exploit concepts from plasmonics and cavity quantum electrodynamics to devise new optical antenna...
By directing light, optical antennas can enhance light-matter interaction and improve the efficiency...
Nanoscale single-photon emitters behave generally as dipoles. Here, we demonstrate multipolar and un...
We exploit concepts from plasmonics and cavity quantum electrodynamics to devise new optical antenna...
A light source that emits single photons at well-defined times and into a well-defined mode would be...
In a previous paper [Nat. Photon. 5, 166 ( 2011)], we reported on a planar dielectric antenna that a...
In a previous paper [Nat. Photon. 5, 166 ( 2011)], we reported on a planar dielectric antenna that a...
Single emitters have been considered as sources of single photons in various contexts, including cry...
Single emitters have been considered as sources of single photons in various contexts, including cry...
Single emitters have been considered as sources of single photons in various contexts such as crypto...
We discuss the use of optical antennas for the modification of the radiative properties of single em...
We discuss the use of optical antennas for the modification of the radiative properties of single em...
Nanoscale quantum emitters are key elements in quantum optics and sensing. However, efficient optica...
\u3cp\u3eOptical antennas are nanoscale versions of radio antennas and have emerged in recent years ...
A main promise of the field of physics called "nanophotonics" that deals with nanotechnology to cont...
We exploit concepts from plasmonics and cavity quantum electrodynamics to devise new optical antenna...
By directing light, optical antennas can enhance light-matter interaction and improve the efficiency...
Nanoscale single-photon emitters behave generally as dipoles. Here, we demonstrate multipolar and un...
We exploit concepts from plasmonics and cavity quantum electrodynamics to devise new optical antenna...