English

Electromagnetically induced transparency resonances inverted in magnetic field

Atomic Physics 2016-02-17 v1 Optics

Abstract

The electromagnetically induced transparency (EIT) phenomenon has been investigated in a Λ\Lambda-system of the 87^{87}Rb D1_1 line in an external transverse magnetic field. Two spectroscopic cells having strongly different values of the relaxation rates γrel\gamma_{rel} are used: a Rb cell with antirelaxation coating (LL\sim1 cm) and a Rb nanometric-thin cell (nano-cell) with thickness of the atomic vapor column LL=795nm. For the EIT in the nano-cell, we have the usual EIT resonances characterized by a reduction in the absorption (i.e. dark resonance (DR)), whereas for the EIT in the Rb cell with an antirelaxation coating, the resonances demonstrate an increase in the absorption (i.e. bright resonances). We suppose that such unusual behavior of the EIT resonances (i.e. the reversal of the sign from DR to BR) is caused by the influence of alignment process. The influence of alignment strongly depends on the configuration of the coupling and probe frequencies as well as on the configuration of the magnetic field.

Keywords

Cite

@article{arxiv.1505.03856,
  title  = {Electromagnetically induced transparency resonances inverted in magnetic field},
  author = {A. Sargsyan and D. Sarkisyan and Y. Pashayan-Leroy and C. Leroy and S. Cartaleva and A. D. Wilson-Gordon and M. Auzinsh},
  journal= {arXiv preprint arXiv:1505.03856},
  year   = {2016}
}

Comments

9 pages,23 figures

R2 v1 2026-06-22T09:34:30.665Z