English

Circular and linear magnetic birefringences in xenon at $\lambda = 1064$ nm

Optics 2015-06-24 v1 Atomic Physics

Abstract

The circular and linear magnetic birefringences corresponding to the Faraday and the Cotton-Mouton effects, respectively, have been measured in xenon at λ=1064\lambda = 1064 nm. The experimental setup is based on time dependent magnetic fields and a high finesse Fabry-Perot cavity. Our value of the Faraday effect is the first measurement at this wavelength. It is compared to theoretical predictions. Our uncertainty of a few percent yields an agreement at better than 1σ\sigma with the computational estimate when relativistic effects are taken into account. Concerning the Cotton-Mouton effect, our measurement, the second ever published at λ=1064\lambda = 1064 nm, agrees at better than 1σ1\sigma with theoretical predictions. We also compare our error budget with those established for other experimental published values.

Keywords

Cite

@article{arxiv.1503.01719,
  title  = {Circular and linear magnetic birefringences in xenon at $\lambda = 1064$ nm},
  author = {Agathe Cadène and Mathilde Fouché and Alice Rivère and Remy Battesti and Sonia Coriani and Antonio Rizzo and Carlo Rizzo},
  journal= {arXiv preprint arXiv:1503.01719},
  year   = {2015}
}