Spontaneous emission in micro- or nanophotonic structures
Спонтанное излучение в микро- и нанофотонных структурах
2021-09-16
SCID: 54.1/adjs882n
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cavity quantum electrodynamicslight–matter interactionmicro- and nanophotonic cavitiessingle-photon sourcesspontaneous emission
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Abstract (AI)
Abstract Single-photon source in micro- or nanoscale is the basic building block of on-chip quantum information and scalable quantum network. Enhanced spontaneous emission based on cavity quantum electrodynamics (CQED) is one of the key principles of realizing single-photon sources fabricated by micro- or nanophotonic cavities. Here we mainly review the spontaneous emission of single emitters in micro- or nanostructures, such as whispering gallery microcavities, photonic crystals, plasmon nanostructures, metamaterials, and their hybrids. The researches have enriched light-matter interaction as well as made great influence in single-photon source, photonic circuit, and on-chip quantum information.
Key Findings
1
Enhanced spontaneous emission through cavity quantum electrodynamics is a central principle for realizing micro- and nanoscale single-photon sources.
2
Micro- and nanophotonic structures enrich light–matter interactions and support advances in single-photon sources, photonic circuits, and on-chip quantum information.
3
Micro- and nanoscale single-photon sources are identified as fundamental building blocks for scalable quantum networks and on-chip quantum information processing.
4
The review covers spontaneous emission from single emitters in whispering-gallery microcavities, photonic crystals, plasmonic nanostructures, metamaterials, and hybrid systems.
Research Object
Spontaneous emission of single emitters in micro- or nanophotonic structures
Research Subject
Enhancement and control of light–matter interaction and spontaneous-emission rates in micro- and nanophotonic cavities and related structures for single-photon sources
Publication Details
Publication Date
2021-09-16
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