Publication | Open Access
Phonon-Induced Spin-Spin Interactions in Diamond Nanostructures: Application to Spin Squeezing
298
Citations
39
References
2013
Year
Diamond NanostructuresEngineeringMagnetic ResonanceSpin DynamicSpin PhenomenonSpin SqueezingQuantum ComputingQuantum MaterialsSpin DephasingDiamond Mechanical NanoresonatorMaterials ScienceQuantum SciencePhysicsNanotechnologyQuantum MagnetismSpintronicsNatural SciencesCondensed Matter PhysicsApplied PhysicsPhonon
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.
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