English

Dipolar Rydberg-atom gas prepared by adiabatic passage through an avoided crossing

Atomic Physics 2015-07-15 v1

Abstract

The passage of cold cesium 49S1/2_{1/2} Rydberg atoms through an electric-field-induced multi-level avoided crossing with nearby hydrogen-like Rydberg levels is employed to prepare a cold, dipolar Rydberg atom gas. When the electric field is ramped through the avoided crossing on time scales on the order of 100~ns or slower, the 49S1/2_{1/2} population adiabatically transitions into high-\emph{l} Rydberg Stark states. The adiabatic state transformation results in a cold gas of Rydberg atoms with large electric dipole moments. After a waiting time of about 1 μ1~\mus and at sufficient atom density, the adiabatically transformed highly dipolar atoms become undetectable, enabling us to discern adiabatic from diabatic passage behavior through the avoided crossing. We attribute the state-selectivity to mm-mixing collisions between the dipolar atoms. The data interpretation is supported by numerical simulations of the passage dynamics and of binary mm-mixing collisions.

Keywords

Cite

@article{arxiv.1504.00518,
  title  = {Dipolar Rydberg-atom gas prepared by adiabatic passage through an avoided crossing},
  author = {Limei Wang and Hao Zhang and Linjie Zhang and Changyong Li and Yonggang Yang and Jianming Zhao and Georg Raithel and Suotang Jia},
  journal= {arXiv preprint arXiv:1504.00518},
  year   = {2015}
}

Comments

9 pages, 6 figures