English

Quantum-assisted Distortion-free audio signal sensing

Quantum Physics 2022-08-24 v2 Applied Physics

Abstract

Quantum sensors are keeping the cutting-edge sensitivities in metrology. However, for high-sensitive measurements of arbitrary signals, limitations in linear dynamic range could introduce distortions when sensing the frequency, magnitude and phase of unknown signals. Here, we overcome these limitations with advanced sensing protocol that combines quantum phase-sensitive detection with heterodyne readout. We present theoretical and experimental investigations using nitrogen-vacancy centers in diamond, showing the ability to sense radio signals with a 98 dB linear dynamic range, a 31 pT/Hz1/2^{1/2} sensitivity, and arbitrary frequency resolution. Further, we perform the quantum-assisted distortion-free audio signal (melody, speech) sensing with high fidelity. The methods developed here could broaden the horizon for quantum sensors towards applications in telecommunication, where high-fidelity and low-distortion at multiple frequency bands within small sensing volumes are required.

Keywords

Cite

@article{arxiv.2111.04100,
  title  = {Quantum-assisted Distortion-free audio signal sensing},
  author = {Chen Zhang and Durga Dasari and Matthias Widmann and Jonas Meinel and Vadim Vorobyov and Polina Kapitanova and Elizaveta Nenasheva and Kazuo Nakamura and Hitoshi Sumiya and Shinobu Onoda and Junichi Isoya and Jörg Wrachtrup},
  journal= {arXiv preprint arXiv:2111.04100},
  year   = {2022}
}

Comments

30 pages, 7 figures

R2 v1 2026-06-24T07:29:28.209Z