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Acoustically induced coherent spin trapping

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arxiv 2104.03011 v1 pith:K5NAL6XC submitted 2021-04-07 quant-ph cond-mat.mes-hall

Acoustically induced coherent spin trapping

classification quant-ph cond-mat.mes-hall
keywords spincoherentquantumacousticacousticallydrivefieldshere
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Hybrid spin-optomechanical quantum systems offer high flexibility, integrability and applicability for quantum science and technology. Particularly, on-chip surface acoustic waves (SAWs) can efficiently drive spin transitions in the ground states (GSs) of atomic-scale, color centre qubits, which are forbidden in case of the more frequently used electromagnetic fields. Here, we demonstrate that strain-induced spin interactions within their optically excited state (ES) can exceed by two orders of magnitude the ones within the GS. This gives rise to novel physical phenomena, such as the acoustically induced coherent spin trapping (CST) unvealed here. The CST manifests itself as the spin preservation along one particular direction under the coherent drive of the GS and ES by the same acoustic field. Our findings provide new opportunities for the coherent control of spin qubits with dynamically generated strain fields that can lead towards the realization of future spin-acoustic quantum devices.

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