English

Randomisation of Pulse Phases for Unambiguous and Robust Quantum Sensing

Quantum Physics 2019-05-29 v1

Abstract

We develop theoretically and demonstrate experimentally a universal dynamical decoupling method for robust quantum sensing with unambiguous signal identification. Our method uses randomisation of control pulses to suppress simultaneously two types of errors in the measured spectra that would otherwise lead to false signal identification. These are spurious responses due to finite-width π\pi pulses, as well as signal distortion caused by π\pi pulse imperfections. For the cases of nanoscale nuclear spin sensing and AC magnetometry, we benchmark the performance of the protocol with a single nitrogen vacancy centre in diamond against widely used non-randomised pulse sequences. Our method is general and can be combined with existing multipulse quantum sensing sequences to enhance their performance.

Keywords

Cite

@article{arxiv.1903.01559,
  title  = {Randomisation of Pulse Phases for Unambiguous and Robust Quantum Sensing},
  author = {Zhen-Yu Wang and Jacob E. Lang and Simon Schmitt and Johannes Lang and Jorge Casanova and Liam McGuinness and Tania S. Monteiro and Fedor Jelezko and Martin B. Plenio},
  journal= {arXiv preprint arXiv:1903.01559},
  year   = {2019}
}
R2 v1 2026-06-23T07:58:09.372Z