Mathavan Sreekanth C, Zapara Artem, Esajas Quinten, Hoekstra Steven
Van Swinderen Institute, University of Groningen, Zernikelaan 25, 9747, AA, Groningen, The Netherlands.
Chemphyschem. 2016 Nov 18;17(22):3709-3713. doi: 10.1002/cphc.201600813. Epub 2016 Oct 28.
A beam of SrF molecules is decelerated from 290 to 120 m s . Following supersonic expansion, the molecules in the X Σ (ν=0, N=1) low-field-seeking state are trapped by the moving potential wells of a traveling-wave Stark decelerator. With a deceleration strength of 9.6 km s the removal of 85 % of the initial kinetic energy in a 4 m-long modular decelerator is demonstrated. The absolute amount of kinetic energy removed is a factor of 1.5 higher compared to previous Stark-deceleration experiments. The demonstrated decelerator provides a novel tool for the creation of highly collimated and slow beams of heavy diatomic molecules, which serve as a good starting point for high-precision tests of fundamental physics.
一束SrF分子从290米每秒减速至120米每秒。在超声速膨胀之后,处于X Σ(ν = 0,N = 1)低场寻找态的分子被行波斯塔克减速器的移动势阱捕获。在一个4米长的模块化减速器中,以9.6千米每秒的减速强度,展示了去除85%初始动能的效果。与之前的斯塔克减速实验相比,去除的动能绝对量高出1.5倍。所展示的减速器为产生重双原子分子的高度准直且慢速的束流提供了一种新工具,这为重双原子分子束流是基础物理高精度测试的良好起点。