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The realization of efficient optical interfaces for solid-state atom-like systems is an important problem in quantum science with potential applications in quantum communications and quantum information processing. We described and demonstrated a technique for coupling single nitrogen vacancy (NV) centers to suspended diamond photonic crystal cavities with quality factors up to 6000. Specifically, we presented an enhancement of the NV center’ s zero-phonon line fluorescence by a factor of ∼ 7 in low-temperature measurements.

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