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Giant hyperfine interaction between a dark exciton condensate and nuclei
Amit Jash
,
Michael Stern
, Subhradeep Misra
, Vladimir Umansky
, Israel Bar Joseph
Department of Physics - at Bar-Ilan University
QUEST - The Quantum Entanglement Science&Technology Impact Center
BINA Research Center - Magnetism
Weizmann Institute of Science
Research output
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peer-review
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Keyphrases
Aluminum Gallium Arsenide
50%
Bose-Einstein Condensate
50%
Coupled Quantum Wells
50%
Dark Exciton
100%
Electron Spin
50%
Exciton Condensate
100%
Gallium Arsenide
50%
Hyperfine Interactions
100%
Nuclear Polarization
50%
Nuclear Spin
50%
Order of Magnitude
50%
Photoexcitation
50%
Photoluminescence Measurements
50%
Radiofrequency Radiation
50%
Physics
Bose-Einstein Condensate
33%
Electron Spin
33%
Exciton
100%
Gallium Arsenide
66%
Nuclear Spin
33%
Photoexcitation
33%
Photoluminescence
33%
Quantum Wells
33%
Radio Wave
33%