Multiphoton coherent manipulation in large-spin qubits

Large-spin Mn2+ ions (S=5/2) diluted in a nonmagnetic MgO matrix of high crystalline symmetry are used to realize a six-level system that can be operated by means of multiphoton coherent Rabi oscillations. This spin system has a very small anisotropy which can be tuned in situ to reversibly transfor...

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Bibliographic Details
Published in:Physical review letters Vol. 102; no. 5; p. 050501
Main Authors: Bertaina, S, Chen, L, Groll, N, Van Tol, J, Dalal, N S, Chiorescu, I
Format: Journal Article
Language:English
Published: United States American Physical Society 06-02-2009
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Summary:Large-spin Mn2+ ions (S=5/2) diluted in a nonmagnetic MgO matrix of high crystalline symmetry are used to realize a six-level system that can be operated by means of multiphoton coherent Rabi oscillations. This spin system has a very small anisotropy which can be tuned in situ to reversibly transform the system between harmonic and nonharmonic level configurations. Decoherence effects are strongly suppressed as a result of the quasi-isotropic electron interaction with the crystal field and with the 55Mn nuclear spins. These results suggest new ways of manipulating, reading, and resetting spin quantum states which can be applied to encode a qubit across several quantum levels.
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ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.102.050501