蒸发冷却器
物理
机械
环境科学
气象学
大气科学
航空航天工程
经典力学
工程类
作者
Xiaolong Yuan,Jiachen Yu,H. Li,Biao Wu,Wei Xiong,Xiaoji Zhou,Xuzong Chen
出处
期刊:Physical review
[American Physical Society]
日期:2024-04-16
卷期号:109 (4)
标识
DOI:10.1103/physreva.109.043315
摘要
In this paper, to investigate how atoms evaporate and cool in microgravity environments of the space station, we have developed the dynamic equation for evaporative cooling of trapped atoms and obtained the analytical expression of atomic temperature with respect to trapping laser parameters and gravitational acceleration. In our model, the evaporation of atoms is equivalent to applying a damping force to the trapped atoms, and the evaporative cooling process of trapped atoms is comprehended as the damped oscillation of trapped atoms in the optical dipole traps. By introducing the gravity in our model, we obtained the analytical model of temperature variation with gravity after cooling, and the theoretical results agree well with the evaporation experiment of rubidium-87 atoms on the ground. Our theoretical results show that, compared with the atomic evaporative cooling experiment on the ground, the microgravity environment of the space station can achieve cooler atomic gases when the losses of atoms, such as the one-body loss caused by background-gas collisions and the three-body recombination loss caused by interatomic inelastic collisions, can be ignored.
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