3.8 Article

Polarization Spectroscopy Applied to Electromagnetically Induced Transparency in Hot Rydberg Atoms Using a Laguerre-Gaussian Beam

Journal

ATOMS
Volume 10, Issue 2, Pages -

Publisher

MDPI
DOI: 10.3390/atoms10020058

Keywords

electromagnetically induced transparency; Laguerre-Gaussian modes; rydberg atoms

Funding

  1. Sao Paulo Research Foundation (FAPESP) [2016/21311-2, 2019/10971-0, 2021/06371-7]
  2. CNPq
  3. Army Research Office [W911NF-21-1-0211]

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In this study, polarization spectroscopy was used to investigate electromagnetically induced transparency in a vapor cell with a hot Rb-85 Rydberg state using a Laguerre-Gaussian mode beam. The results showed that the transition linewidth for a Laguerre-Gaussian mode control beam was narrower than for a Gaussian mode, and could be well reproduced by a simplified Lindblad master equation model.
In this work, we have applied polarization spectroscopy to study electromagnetically induced transparency involving hot Rb-85 Rydberg state in a vapor cell using a Laguerre-Gaussian mode beam. Such spectroscopy technique generates a dispersive signal, which allows a direct measurement of the transition linewidth. Our results show that the measured transition linewidth for a Laguerre-Gaussian mode control beam is narrower than for a Gaussian mode. Besides, it can be well reproduced by a simplified Lindblad master equation model.

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