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Coherence of a dynamically decoupled quantum-dot hole spin

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arxiv 1711.09169 v1 pith:NBDGOTC7 submitted 2017-11-24 quant-ph cond-mat.mes-hall

Coherence of a dynamically decoupled quantum-dot hole spin

classification quant-ph cond-mat.mes-hall
keywords coherenceholespinallowallowsanalysiscoherentconfined
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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A heavy hole confined to an InGaAs quantum dot promises the union of a stable spin and optical coherence to form a near perfect, high-bandwidth spin-photon interface. Despite theoretical predictions and encouraging preliminary measurements, the dynamic processes determining the coherence of the hole spin are yet to be understood. Here, we establish the regimes that allow for a highly coherent hole spin in these systems, recovering a crossover from hyperfine to electrical-noise dominated decoherence with a few-Tesla external magnetic field. Dynamical decoupling allows us to reach the longest ground-state coherence time, T2, of 4.4 $\mu$s, observed in this system. The improvement of coherence we measure is quantitatively supported by an independent analysis of the local electrical environment.

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