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Raman-excited spin coherences in nitrogen-vacancy color centers in diamond
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Citations
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References
2001
Year
Materials ScienceQuantum ScienceDiamond-like CarbonEngineeringPhysicsOptical PropertiesSpectroscopyNatural SciencesApplied PhysicsCondensed Matter PhysicsDiamond Color CentersQuantum SolidQuantum Photonic DeviceRaman-excited Spin CoherencesSpectroscopic PropertyMaximal Absorption Suppression
Raman-excited spin coherences were experimentally observed in nitrogen-vacancy (N-V) diamond color centers by means of nondegenerate four-wave mixing and electromagnetically induced transparency. The maximal absorption suppression was found to be 17%, which corresponds to 70% of what is possible given the random geometric orientation of the N-V center in diamond. In the context of quantum computing in solids, this level of transparency represents efficient preparation of quantum bits, as well as the ability to perform arbitrary single-quantum-bit rotations.
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