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Deep cooling of optically trapped atoms implemented by magnetic levitation without transverse confinement

  • Chen Li
  • , Tianwei Zhou
  • , Yueyang Zhai
  • , Jinggang Xiang
  • , Tian Luan
  • , Qi Huang
  • , Shifeng Yang
  • , Wei Xiong
  • , Xuzong Chen
  • Peking University

Research output: Contribution to journalArticlepeer-review

Abstract

We report a setup for the deep cooling of atoms in an optical trap. The deep cooling is implemented by eliminating the influence of gravity using specially constructed magnetic coils. Compared to the conventional method of generating a magnetic levitating force, the lower trap frequency achieved in our setup provides a lower limit of temperature and more freedoms to Bose gases with a simpler solution. A final temperature as low as ∼6nK is achieved in the optical trap, and the atomic density is decreased by nearly two orders of magnitude during the second stage of evaporative cooling. This deep cooling of optically trapped atoms holds promise for many applications, such as atomic interferometers, atomic gyroscopes, and magnetometers, as well as many basic scientific research directions, such as quantum simulations and atom optics.

Original languageEnglish
Article number053104
JournalReview of Scientific Instruments
Volume88
Issue number5
DOIs
StatePublished - 1 May 2017

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