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Long-distance excitation of nitrogen-vacancy centers in diamond via surface spin waves

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arxiv 1708.00596 v1 pith:KIBKIL5Q submitted 2017-08-02 cond-mat.mtrl-sci

Long-distance excitation of nitrogen-vacancy centers in diamond via surface spin waves

classification cond-mat.mtrl-sci
keywords spinmsswdiamonddistancesmicrowavenitrogen-vacancyqubitssurface
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Coherent communication over mesoscale distances is a necessary condition for the application of solid-state spin qubits to scalable quantum information processing. Among other routes under study, one possibility entails the generation of magnetostatic surface spin waves (MSSW) dipolarly coupled to shallow paramagnetic defects in wide-bandgap semiconductors. As an initial step in this direction, here we make use of room-temperature MSSWs to mediate the interaction between the microwave field from an antenna and the spin of a nitrogen-vacancy (NV) center in diamond. We show that this transport spans distances exceeding 3 mm, a manifestation of the MSSW robustness and long diffusion length. Using the NV spin as a local sensor, we find that the MSSW amplitude grows linearly with the applied microwave power, suggesting this approach could be extended to amplify the signal from neighboring spin qubits by several orders of magnitude.

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