English

Electromagnetically Induced Transparency and Optical Pumping in the Hyperfine Paschen-Back Regime

Quantum Physics 2023-12-29 v2 Atomic Physics

Abstract

We report spectroscopy experiments of rubidium vapor in a high magnetic field under conditions of electromagnetically induced transparency (EIT) and optical pumping. The 1.1 T static magnetic field decouples nuclear and electronic spins and shifts each magnetic state via the Zeeman effect, allowing us to resolve individual optical transitions of the D2_2 line in a Doppler-broadened medium. By varying the control laser power driving one leg of a spectrally isolated Λ\Lambda system we tune the vapor from the EIT regime to conditions of Autler-Townes line splitting. The resulting spectra conform to simple three-level models demonstrating the effective simplification of the energetic structure. Further, we quantify the viability of state preparation via optical pumping on nuclear spin-forbidden transitions. We conclude that the ``cleanliness'' of this system greatly enhances the capabilities of quantum control in hot vapor, offering advantages in a broad variety of quantum applications plagued by spurious light-matter interaction processes, such as atomic quantum memories for light.

Keywords

Cite

@article{arxiv.2307.08545,
  title  = {Electromagnetically Induced Transparency and Optical Pumping in the Hyperfine Paschen-Back Regime},
  author = {Roberto Mottola and Gianni Buser and Philipp Treutlein},
  journal= {arXiv preprint arXiv:2307.08545},
  year   = {2023}
}

Comments

10 pages, 7 figures

R2 v1 2026-06-28T11:32:34.318Z