English

Magnetic tensor gradiometry using Ramsey interferometry of spinor condensates

Quantum Physics 2015-11-11 v2 Quantum Gases Atomic Physics

Abstract

We have realized a magnetic tensor gradiometer by interferometrically measuring the relative phase between two spatially separated Bose-Einstein condensates (BECs). We perform simultaneous Ramsey interferometry of the proximate 87^{87}Rb spin-1 condensates in freefall and infer their relative Larmor phase -- and thus the differential magnetic field strength -- with a common-mode phase noise suppression exceeding 50dB50\,\mathrm{dB}. By appropriately biasing the magnetic field and separating the BECs along orthogonal directions, we measure the magnetic field gradient tensor of ambient and applied magnetic fields with a nominal precision of 30μGcm130\,\mathrm{\mu G\,cm^{-1}} and a sensor volume of 2×105mm32\times10^{-5}\,\mathrm{mm}^3. We predict a spin-projection noise limited magnetic energy resolution of order \hbar for typical Zeeman coherence times of trapped condensates with this scheme, even with the low measurement duty cycle inherent to BEC experiments.

Keywords

Cite

@article{arxiv.1408.0944,
  title  = {Magnetic tensor gradiometry using Ramsey interferometry of spinor condensates},
  author = {A. A. Wood and L. M. Bennie and A. Duong and M. Jasperse and L. D. Turner and R. P. Anderson},
  journal= {arXiv preprint arXiv:1408.0944},
  year   = {2015}
}

Comments

7 pages, 4 figures

R2 v1 2026-06-22T05:20:40.248Z