High-cooperativity coupling of electron-spin ensembles to superconducting cavities

Electron spins in solids are promising candidates for quantum memories for superconducting qubits because they can have long coherence times, large collective couplings, and many qubits could be encoded into spin waves of a single ensemble. We demonstrate the coupling of electron-spin ensembles to a...

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Veröffentlicht in:Physical review letters 2010-09, Vol.105 (14), p.140501-140501, Article 140501
Hauptverfasser: Schuster, D I, Sears, A P, Ginossar, E, DiCarlo, L, Frunzio, L, Morton, J J L, Wu, H, Briggs, G A D, Buckley, B B, Awschalom, D D, Schoelkopf, R J
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container_end_page 140501
container_issue 14
container_start_page 140501
container_title Physical review letters
container_volume 105
creator Schuster, D I
Sears, A P
Ginossar, E
DiCarlo, L
Frunzio, L
Morton, J J L
Wu, H
Briggs, G A D
Buckley, B B
Awschalom, D D
Schoelkopf, R J
description Electron spins in solids are promising candidates for quantum memories for superconducting qubits because they can have long coherence times, large collective couplings, and many qubits could be encoded into spin waves of a single ensemble. We demonstrate the coupling of electron-spin ensembles to a superconducting transmission-line cavity at strengths greatly exceeding the cavity decay rates and comparable to the spin linewidths. We also perform broadband spectroscopy of ruby (Al₂O₃:Cr(3+)) at millikelvin temperatures and low powers, using an on-chip feedline. In addition, we observe hyperfine structure in diamond P1 centers.
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title High-cooperativity coupling of electron-spin ensembles to superconducting cavities
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