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All-optical atomic magnetometry using an elliptically polarized amplitude-modulated light wave

Atomic Physics 2024-12-10 v1 Instrumentation and Detectors Quantum Physics

Abstract

We study a resonant interaction of an elliptically polarized light wave with 87^{87}Rb vapor (D1_1 line) exposed to a transverse magnetic field. A 55×\times55×\times55~mm3^3 glass vapor cell is used for the experiments. The wave intensity is modulated at the frequency Ωm\Omega_m. By scanning Ωm\Omega_m near the Larmor frequency ΩL\Omega_L, a magnetic resonance (MR) can be observed as a change in the ellipticity parameter of the wave polarization. This method for observing MR allows to significantly improve the signal-to-noise ratio compared to a classical Bell-Bloom scheme using a circularly polarized wave. The sensitivity of the magnetic field sensor is estimated to be \approx\,130130~fT/\surdHz in a 22~kHz bandwidth, confidently competing with widely used Faraday-rotation Bell-Bloom schemes. The results can be used to develop a miniature all-optical magnetic field sensor for medicine and geophysics.

Keywords

Cite

@article{arxiv.2408.01968,
  title  = {All-optical atomic magnetometry using an elliptically polarized amplitude-modulated light wave},
  author = {Anton Makarov and Katerina Kozlova and Denis Brazhnikov and Vladislav Vishnyakov and Andrey Goncharov},
  journal= {arXiv preprint arXiv:2408.01968},
  year   = {2024}
}

Comments

5 pages, 4 figures

R2 v1 2026-06-28T18:03:23.980Z