Suppression of spin-bath dynamics for improved coherence of multi-spin-qubit systems

Multi-qubit systems are crucial for the advancement and application of quantum science. Such systems require maintaining long coherence times while increasing the number of qubits available for coherent manipulation. For solid-state spin systems, qubit coherence is closely related to fundamental que...

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Bibliographic Details
Main Authors: Bar-Gill, N. (Author), Pham, L.M (Author), Belthangady, C. (Author), Le Sage, David (Author), Maze, Jeronimo R. (Author), Lukin, M. D. (Author), Yacoby, A. (Author), Walsworth, R. (Author)
Other Authors: Massachusetts Institute of Technology. Department of Nuclear Science and Engineering (Contributor), Cappellaro, Paola (Contributor)
Format: Article
Language:English
Published: Nature Publishing Group, 2014-01-13T20:48:54Z.
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Online Access:Get fulltext
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100 1 0 |a Bar-Gill, N.  |e author 
100 1 0 |a Massachusetts Institute of Technology. Department of Nuclear Science and Engineering  |e contributor 
100 1 0 |a Cappellaro, Paola  |e contributor 
100 1 0 |a Cappellaro, Paola  |e contributor 
700 1 0 |a Pham, L.M.  |e author 
700 1 0 |a Belthangady, C.  |e author 
700 1 0 |a Le Sage, David  |e author 
700 1 0 |a Maze, Jeronimo R.  |e author 
700 1 0 |a Lukin, M. D.  |e author 
700 1 0 |a Yacoby, A.  |e author 
700 1 0 |a Walsworth, R.  |e author 
245 0 0 |a Suppression of spin-bath dynamics for improved coherence of multi-spin-qubit systems 
260 |b Nature Publishing Group,   |c 2014-01-13T20:48:54Z. 
856 |z Get fulltext  |u http://hdl.handle.net/1721.1/83936 
520 |a Multi-qubit systems are crucial for the advancement and application of quantum science. Such systems require maintaining long coherence times while increasing the number of qubits available for coherent manipulation. For solid-state spin systems, qubit coherence is closely related to fundamental questions of many-body spin dynamics. Here we apply a coherent spectroscopic technique to characterize the dynamics of the composite solid-state spin environment of nitrogen-vacancy colour centres in room temperature diamond. We identify a possible new mechanism in diamond for suppression of electronic spin-bath dynamics in the presence of a nuclear spin bath of sufficient concentration. This suppression enhances the efficacy of dynamical decoupling techniques, resulting in increased coherence times for multi-spin-qubit systems, thus paving the way for applications in quantum information, sensing and metrology. 
520 |a National Institute of Standards and Technology (U.S.) 
520 |a National Science Foundation (U.S.) 
520 |a United States. Army Research Office 
520 |a United States. Defense Advanced Research Projects Agency 
520 |a National Science Foundation (U.S.) (Grant DMG-1005926) 
546 |a en_US 
655 7 |a Article 
773 |t Nature Communications