We present a microfabricated optical cavity, which combines a very small mode volume with high finesse. In contrast to other micro-resonators, such as microspheres, the structure we have built gives atoms and molecules direct access to the high-intensity part of the field mode, enabling them to interact strongly with photons in the cavity for the purposes of detection and quantum-coherent manipulation. Light couples directly in and out of the resonator through an optical fiber, avoiding the need for sensitive coupling optics. This renders the cavity particularly attractive as a component of a lab-on-a-chip, and as a node in a quantum network
Developing a hybrid platform that combines nanophotonic circuits and atomic physic may provide new c...
Motivated to develop quantum technologies and to study ever-more complex quantum systems,scientists ...
Over the past decade, strong interactions of light and matter at the single-photon level have enable...
We present a microfabricated optical cavity, which combines a very small mode volume with high fines...
We present a microfabricated optical cavity, which combines a very small mode volume with high fines...
Micron-scale optical cavities are produced using a combination of template sphere self-assembly and ...
Due to the rapid development of nanophotonics, microring resonators suspended on a membrane holds pr...
Micrometer-scale optical cavities are produced by a combination of template sphere self-assembly and...
We report the realisation of a high-finesse open-access cavity array, tailored towards the creation ...
Large arrays of uniform, precisely tunable, open-access optical microcavities with mode volumes as s...
Abstract: We propose a novel approach to confine light in a silica microfiber (MF) cavity using a la...
We report the realisation of a high-finesse open-access cavity array, tailored towards the creation ...
Optical microcavities confine light to small volumes by resonant recirculation. Devices based on opt...
Large arrays of uniform, precisely tunable, open-access optical microcavities with mode volumes as s...
Confining a laser field between two high reflectivity mirrors of a high-finesse cavity can increase ...
Developing a hybrid platform that combines nanophotonic circuits and atomic physic may provide new c...
Motivated to develop quantum technologies and to study ever-more complex quantum systems,scientists ...
Over the past decade, strong interactions of light and matter at the single-photon level have enable...
We present a microfabricated optical cavity, which combines a very small mode volume with high fines...
We present a microfabricated optical cavity, which combines a very small mode volume with high fines...
Micron-scale optical cavities are produced using a combination of template sphere self-assembly and ...
Due to the rapid development of nanophotonics, microring resonators suspended on a membrane holds pr...
Micrometer-scale optical cavities are produced by a combination of template sphere self-assembly and...
We report the realisation of a high-finesse open-access cavity array, tailored towards the creation ...
Large arrays of uniform, precisely tunable, open-access optical microcavities with mode volumes as s...
Abstract: We propose a novel approach to confine light in a silica microfiber (MF) cavity using a la...
We report the realisation of a high-finesse open-access cavity array, tailored towards the creation ...
Optical microcavities confine light to small volumes by resonant recirculation. Devices based on opt...
Large arrays of uniform, precisely tunable, open-access optical microcavities with mode volumes as s...
Confining a laser field between two high reflectivity mirrors of a high-finesse cavity can increase ...
Developing a hybrid platform that combines nanophotonic circuits and atomic physic may provide new c...
Motivated to develop quantum technologies and to study ever-more complex quantum systems,scientists ...
Over the past decade, strong interactions of light and matter at the single-photon level have enable...