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An Atomic Frequency Comb Memory in Rare-Earth-Doped Thin-Film Lithium Niobate
Subhojit Dutta
, Yuqi Zhao
, Uday Saha
, Demitry Farfurnik
,
Elizabeth A. Goldschmidt
, Edo Waks
Physics
Electrical and Computer Engineering
Research output
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peer-review
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Keyphrases
Rare Earth Doping
100%
Thin-film Lithium Niobate
100%
Doped Thin Films
100%
Atomic Frequency Comb
100%
Waveguide
40%
Quantum Memory
40%
Order of Magnitude
20%
Three-order
20%
Fabrication Methods
20%
Bulk Material
20%
Wafer-scale
20%
Optical Power
20%
High Efficiency
20%
Coherent Control
20%
Computer Networks
20%
Storage Time
20%
Large Cross-section
20%
Optical Tunability
20%
Device Lead
20%
Integrated chip
20%
Optical Confinement
20%
Photonic Systems
20%
Power Required
20%
Optical Data Storage
20%
Quantum Networks
20%
Optical Memory
20%
Quantum Photonics
20%
Rare-earth Doped Crystals
20%
Optical Quantum Computer
20%
Material Science
Thin Films
100%
Waveguide
100%
Lithium Niobate
100%
Optical Power
50%
Physics
Thin Films
100%
Frequency Comb
100%
Waveguide
40%
Photonics
20%
Optical Power
20%
Coherent Control
20%
Quantum Computer
20%
Doped Crystal
20%