Spin-phonon interfaces in coupled nanomechanical cantilevers

Coupled micro- and nanomechanical oscillators are of fundamental and technical interest for emerging quantum technologies. Upon interfacing with long-lived solid-state spins, the coherent manipulation of the quantum hybrid system becomes possible even at ambient conditions. While, the ability of the...

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Veröffentlicht in:arXiv.org 2019-11
Hauptverfasser: Oeckinghaus, Thomas, S Ali Momenzadeh, Scheiger, Philipp, Shalomayeva, Tetyana, Finkler, Amit, Dasari, Durga, Stöhr, Rainer, Wrachtrup, Jörg
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Sprache:eng
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Zusammenfassung:Coupled micro- and nanomechanical oscillators are of fundamental and technical interest for emerging quantum technologies. Upon interfacing with long-lived solid-state spins, the coherent manipulation of the quantum hybrid system becomes possible even at ambient conditions. While, the ability of these systems to act as a quantum bus inducing long-range spin-spin interactions has been known, the possibility to coherently couple electron/nuclear spins to the common modes of multiple oscillators and map their mechanical motion to spin-polarization has not been experimentally demonstrated. We here report experiments on interfacing spins to the common modes of a coupled cantilever system, and show their correlation by translating ultra-low forces induced by radiation from one oscillator to a distant spin. Further, we analyze the coherent spin-spin coupling induced by the common modes and estimate the entanglement generation among distant spins.
ISSN:2331-8422
DOI:10.48550/arxiv.1911.12642