We report the demonstration of strong coupling between single Cesium atoms and a high-Q chip-based microresonator. Our toroidal microresonators are compact, Si chip-based whispering gallery mode resonators that confine light to small volumes with extremely low losses, and are manufactured in large numbers by standard lithographic techniques. Combined with the capability to couple efficiently light to and from these microresonators by a tapered optical fiber, toroidal microresonators offer a promising avenue towards scalable quantum networks. Experimentally, laser cooled Cs atoms are dropped onto a toroidal microresonator while a probe beam is critically coupled to the cavity mode. When an atom interacts with the cavity, it modifies the reso...
A promising approach to merge atomic systems with scalable photonics has emerged recently, which con...
Using ultrahigh-Q toroid microcavities on a chip, we demonstrate a monolithic microcavity Raman lase...
The Whispering Gallery Modes (WGMs) of fused silica microspheres hold the promise for simultaneous a...
We report the demonstration of strong coupling between single Cesium atoms and a high-Q chip-based m...
Strong coupling is achieved for individual Cesium atoms falling through the evanescent field of a hi...
Over the past decade, strong interactions of light and matter at the single-photon level have enable...
Over the past decade, strong interactions of light and matter at the single-photon level have enable...
We investigate the suitability of toroidal microcavities for strong-coupling cavity quantum electrod...
Over the past decade, strong interactions of light and matter at the single-photon level have enable...
The sub-wavelength optical confinement and low optical loss of nanophotonic devices dramatically enh...
Fiber coupled silicon nitride microcavities with Q > 3.6 times 10^6 and effective mode volume < 10(λ...
Cavity quantum electrodynamics provides the setting for quantum control of strong interactions betwe...
We report measurements of cavity-QED effects for the radiative coupling of atoms in a dilute vapor t...
A long-standing ambition in the field of cavity quantum electrodynamics has been to trap single atom...
A promising approach to merge atomic systems with scalable photonics has emerged recently, which con...
A promising approach to merge atomic systems with scalable photonics has emerged recently, which con...
Using ultrahigh-Q toroid microcavities on a chip, we demonstrate a monolithic microcavity Raman lase...
The Whispering Gallery Modes (WGMs) of fused silica microspheres hold the promise for simultaneous a...
We report the demonstration of strong coupling between single Cesium atoms and a high-Q chip-based m...
Strong coupling is achieved for individual Cesium atoms falling through the evanescent field of a hi...
Over the past decade, strong interactions of light and matter at the single-photon level have enable...
Over the past decade, strong interactions of light and matter at the single-photon level have enable...
We investigate the suitability of toroidal microcavities for strong-coupling cavity quantum electrod...
Over the past decade, strong interactions of light and matter at the single-photon level have enable...
The sub-wavelength optical confinement and low optical loss of nanophotonic devices dramatically enh...
Fiber coupled silicon nitride microcavities with Q > 3.6 times 10^6 and effective mode volume < 10(λ...
Cavity quantum electrodynamics provides the setting for quantum control of strong interactions betwe...
We report measurements of cavity-QED effects for the radiative coupling of atoms in a dilute vapor t...
A long-standing ambition in the field of cavity quantum electrodynamics has been to trap single atom...
A promising approach to merge atomic systems with scalable photonics has emerged recently, which con...
A promising approach to merge atomic systems with scalable photonics has emerged recently, which con...
Using ultrahigh-Q toroid microcavities on a chip, we demonstrate a monolithic microcavity Raman lase...
The Whispering Gallery Modes (WGMs) of fused silica microspheres hold the promise for simultaneous a...