Hybrid semiconductor-dielectric microresonator with quantum dot delivers 11% end-to-end efficiency for polarized telecom C-band single photons.
Nature Nanotechnology , volume =
4 Pith papers cite this work. Polarity classification is still indexing.
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A compact tunable open microcavity platform achieves vibration-free high-finesse operation at cryogenic temperatures with 3 nm in-situ tuning and cooperativity exceeding unity with an InGaAs quantum dot.
A heralded single-photon source at telecom wavelengths is realized by combining a narrow-band silicon nitride photon-pair source with GHz-gated InGaAs/InP detectors that provide both timing and spectral filtering.
A review summarizing input-output methods, theoretical proposals, and experimental demonstrations of emitter-based single-photon switches in nanophotonic structures.
citing papers explorer
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Telecom C-band single-photon sources with a semiconductor-dielectric microresonator
Hybrid semiconductor-dielectric microresonator with quantum dot delivers 11% end-to-end efficiency for polarized telecom C-band single photons.
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A Compact, Robust, and Tunable Open Microcavity Platform for Solid-State Quantum Electrodynamics
A compact tunable open microcavity platform achieves vibration-free high-finesse operation at cryogenic temperatures with 3 nm in-situ tuning and cooperativity exceeding unity with an InGaAs quantum dot.
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Integrated Telecom Wavelength Heralded Single-Photon Source based on GHz gated detectors
A heralded single-photon source at telecom wavelengths is realized by combining a narrow-band silicon nitride photon-pair source with GHz-gated InGaAs/InP detectors that provide both timing and spectral filtering.
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Routing single photons with quantum emitters coupled to nanostructures
A review summarizing input-output methods, theoretical proposals, and experimental demonstrations of emitter-based single-photon switches in nanophotonic structures.