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Trapped Ion Quantum Computing
Coherence of an optically illuminated single nuclear spin qubit
arXiv
Authors: Liang Jiang, M. V. Gurudev Dutt, Emre Togan, Lily Childress, Paola Cappellaro, Jacob M. Taylor, Mikhail D. Lukin
Year
2007
Paper ID
49718
Status
Preprint
Abstract Read
~2 min
Abstract Words
116
Citations
N/A
Abstract
We investigate the coherence properties of individual nuclear spin quantum bits in diamond [Dutt et al., Science, 316, 1312 (2007)] when a proximal electronic spin associated with a nitrogen-vacancy (NV) center is being interrogated by optical radiation. The resulting nuclear spin dynamics are governed by time-dependent hyperfine interaction associated with rapid electronic transitions, which can be described by a spin-fluctuator model. We show that due to a process analogous to motional averaging in nuclear magnetic resonance, the nuclear spin coherence can be preserved after a large number of optical excitation cycles. Our theoretical analysis is in good agreement with experimental results. It indicates a novel approach that could potentially isolate the nuclear spin system completely from the electronic environment.
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- This paper contributes to the Trapped-Ion Quantum Computing research area in the Quantum Articles archive.
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- We investigate the coherence properties of individual nuclear spin quantum bits in diamond [Dutt et al., Science, 316, 1312 (2007)] when a proximal electronic spin associated...
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