A diamond MEMS device tunes tin-vacancy center optical transitions over 40 GHz and stabilizes them with real-time strain feedback, a 12-fold stability improvement.
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Large-Range Tuning and Stabilization of the Optical Transition of Diamond Tin-Vacancy Centers by In-Situ Strain Control
A diamond MEMS device tunes tin-vacancy center optical transitions over 40 GHz and stabilizes them with real-time strain feedback, a 12-fold stability improvement.