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arxiv: 1401.2438 · v1 · pith:F4CEBA5Xnew · submitted 2014-01-10 · 🪐 quant-ph

Cavity-enhanced room-temperature magnetometry using absorption by nitrogen-vacancy centers in diamond

classification 🪐 quant-ph
keywords absorptiondiamondmagneticsensitivitysqrtcavity-enhancedcentersdemonstrate
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We demonstrate a cavity-enhanced room-temperature magnetic field sensor based on nitrogen-vacancy centers in diamond. Magnetic resonance is detected using absorption of light resonant with the 1042 nm spin-singlet transition. The diamond is placed in an external optical cavity to enhance the absorption, and significant absorption is observed even at room temperature. We demonstrate a magnetic field sensitivity of 2.5 nT/sqrt(Hz), and project a photon shot-noise-limited sensitivity of 70 pT/sqrt(Hz) for a few mW of infrared light, and a quantum projection-noise-limited sensitivity of 250 fT/sqrt(Hz) for the sensing volume of 90 um x 90 um 200 um.

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