Surface-induced strain can create magnetic-field clock transitions that protect ultra-shallow NV centers from decoherence, predicted to approach the phonon-limited regime at 1 nm and enabling vector magnetometry.
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A Coherence-Protection Scheme for Quantum Sensors Based on Ultra-Shallow Single Nitrogen-Vacancy Centers in Diamond
Surface-induced strain can create magnetic-field clock transitions that protect ultra-shallow NV centers from decoherence, predicted to approach the phonon-limited regime at 1 nm and enabling vector magnetometry.