English

Nonlinear magneto-optical rotation with frequency-modulated light in the geophysical field range

Atomic Physics 2010-10-12 v1

Abstract

Recent work investigating resonant nonlinear magneto-optical rotation (NMOR) related to long-lived (τ\tsrel1s\tau\ts{rel} \sim 1 {\rm s}) ground-state atomic coherences has demonstrated potential magnetometric sensitivities exceeding 1011G/Hz10^{-11} {\rm G/\sqrt{Hz}} for small (1μG\lesssim 1 {\rm \mu G}) magnetic fields. In the present work, NMOR using frequency-modulated light (FM NMOR) is studied in the regime where the longitudinal magnetic field is in the geophysical range (500mG\sim 500 {\rm mG}), of particular interest for many applications. In this regime a splitting of the FM NMOR resonance due to the nonlinear Zeeman effect is observed. At sufficiently high light intensities, there is also a splitting of the FM NMOR resonances due to ac Stark shifts induced by the optical field, as well as evidence of alignment-to-orientation conversion type processes. The consequences of these effects for FM-NMOR-based atomic magnetometry in the geophysical field range are considered.

Keywords

Cite

@article{arxiv.physics/0602109,
  title  = {Nonlinear magneto-optical rotation with frequency-modulated light in the geophysical field range},
  author = {V. Acosta and M. P. Ledbetter and S. M. Rochester and D. Budker and D. F. Jackson-Kimball and D. C. Hovde and W. Gawlik and S. Pustelny and J. Zachorowski},
  journal= {arXiv preprint arXiv:physics/0602109},
  year   = {2010}
}

Comments

8 pages, 8 figures

R2 v1 2026-07-22T19:08:56.705Z