4.8 Article

Quantum sensing with arbitrary frequency resolution

期刊

SCIENCE
卷 356, 期 6340, 页码 837-840

出版社

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.aam7009

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资金

  1. Swiss National Science Foundation (SNSF) [200021 137520]
  2. National Competence Center in Research on Quantum Science and Information Technology (NCCR QSIT)
  3. DIADEMS program of the European Commission [FP7-611143]

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Quantum sensing takes advantage of well-controlled quantum systems for performing measurements with high sensitivity and precision. We have implemented a concept for quantum sensing with arbitrary frequency resolution, independent of the qubit probe and limited only by the stability of an external synchronization clock. Our conceptmakes use of quantum lock-in detection to continuously probe a signal of interest. Using the electronic spin of a single nitrogen-vacancy center in diamond, we demonstrate detection of oscillating magnetic fields with a frequency resolution of 70 microhertz over a megahertz bandwidth. The continuous sampling further guarantees an enhanced sensitivity, reaching a signal-to-noise ratio in excess of 104 for a 170-nanotesla test signal measured during a 1-hour interval. Our technique has applications in magnetic resonance spectroscopy, quantum simulation, and sensitive signal detection.

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