English

Rydberg-EIT of $^{85}$Rb vapor in a cell with Ne buffer gas

Atomic Physics 2023-08-16 v1 Instrumentation and Detectors Plasma Physics Quantum Physics

Abstract

We investigate Rydberg electromagnetically induced transparency (EIT) of 85^{85}Rb atomic vapor in a glass cell that contains a 5-Torr neon buffer gas. At low probe power, EIT lines exhibit a positive frequency shift of about 70~MHz and a broadening of about 120~MHz, with minimal dependence on the principal quantum number of the Rydberg states. The EIT line shift arises from s-wave scattering between the Rydberg electron and the Ne atoms, which induces a positive shift near 190~MHz, and from the polarization of the Ne atoms within the Rydberg atom, which adds a negative shift near -120~MHz. The line broadening is largely due to the Ne polarization. Our experimental results are in good qualitative agreement with our theoretical model, in which the shift is linear in buffer-gas density. Our results suggest that Rydberg-EIT can serve as a direct spectroscopic probe for buffer-gas density at low pressure, and that it is suitable for non-invasive measurement of electric fields in low-pressure noble-gas discharge plasmas and in dusty plasmas.

Keywords

Cite

@article{arxiv.2308.07554,
  title  = {Rydberg-EIT of $^{85}$Rb vapor in a cell with Ne buffer gas},
  author = {Nithiwadee Thaicharoen and Ryan Cardman and Georg Raithel},
  journal= {arXiv preprint arXiv:2308.07554},
  year   = {2023}
}