Dipolar Rydberg-atom gas prepared by adiabatic passage through an avoided crossing
Abstract
The passage of cold cesium 49S 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 49S 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 s 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 -mixing collisions between the dipolar atoms. The data interpretation is supported by numerical simulations of the passage dynamics and of binary -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