Phonon-induced spin-spin interactions in diamond nanostructures: application to spin squeezing

We propose and analyze a novel mechanism for long-range spin-spin interactions in diamond nanostructures. The interactions between electronic spins, associated with nitrogen-vacancy centers in diamond, are mediated by their coupling via strain to the vibrational mode of a diamond mechanical nanoreso...

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Veröffentlicht in:Physical review letters 2013-04, Vol.110 (15), p.156402-156402, Article 156402
Hauptverfasser: Bennett, S D, Yao, N Y, Otterbach, J, Zoller, P, Rabl, P, Lukin, M D
Format: Artikel
Sprache:eng
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Zusammenfassung:We propose and analyze a novel mechanism for long-range spin-spin interactions in diamond nanostructures. The interactions between electronic spins, associated with nitrogen-vacancy centers in diamond, are mediated by their coupling via strain to the vibrational mode of a diamond mechanical nanoresonator. This coupling results in phonon-mediated effective spin-spin interactions that can be used to generate squeezed states of a spin ensemble. We show that spin dephasing and relaxation can be largely suppressed, allowing for substantial spin squeezing under realistic experimental conditions. Our approach has implications for spin-ensemble magnetometry, as well as phonon-mediated quantum information processing with spin qubits.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.110.156402