Silicon-Nitride Photonic Integrated Circuits for Atomic Systems
Author:
Affiliation:
1. University of Glasgow,James Watt School of Engineering,Glasgow G12 8LT,U.K.
2. University of Strathclyde,SUPA and Department of Physics,Glasgow G4 0NG,U.K.
Funder
Royal Academy of Engineering
Publisher
IEEE
Link
http://xplorestaging.ieee.org/ielx7/10224359/10224363/10224366.pdf?arnumber=10224366
Reference9 articles.
1. 14 million Q factor Si3N4 micro-ring resonator at 780 nm wavelength for chip-scale atomic systems
2. Silicon nitride waveguide polarization rotator and polarization beam splitter for chip-scale atomic systems
3. A tuneable wavelength reference for chip-scale laser cooling;dyer,2022
4. Distributed Feedback Lasers Operating at 780 nm Wavelength Integrated on Si Substrates for Chip-scale Atomic Systems
5. Architecture for the photonic integration of an optical atomic clock
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1. High‐power mode‐hop‐free tunable DFB laser at 780 nm;Electronics Letters;2024-07
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