Physical Review Letters · 2020 · 27 citations · 59 references
EngineeringCavity QedMagnetic ResonanceClock TransitionQuantum ComputingElectron SpinsSuperconductivityQuantum SciencePhysicsQuantum DeviceQuantum Microwave FieldsMultimode StorageLong Coherence TimesQuantum MagnetismSpintronicsNatural SciencesApplied PhysicsCondensed Matter PhysicsPhase Coherence
We report long coherence times (up to 300 ms) for near-surface bismuth donor electron spins in silicon coupled to a superconducting microresonator, biased at a clock transition. This enables us to demonstrate the partial absorption of a train of weak microwave fields in the spin ensemble, their storage for 100 ms, and their retrieval, using a Hahn-echo-like protocol. Phase coherence and quantum statistics are preserved in the storage.
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