Greenberg James, Krohn O A, Bossert Jason A, Shyur Yomay, Macaluso David, Fitch N J, Lewandowski H J
Department of Physics, University of Colorado, Boulder, Colorado 80309, USA.
Rev Sci Instrum. 2021 Oct 1;92(10):103202. doi: 10.1063/5.0057859.
Producing high densities of molecules is a fundamental challenge for low-temperature, ion-molecule reaction studies. Traveling-wave Stark decelerators promise to deliver high density beams of cold, polar molecules but require non-trivial control of high-voltage potentials. We have overcome this experimental challenge and demonstrate continuous deceleration of ND from 385 to 10 m/s, while driving the decelerator electrodes with a 10 kV amplitude sinewave. In addition, we test an alternative slowing scheme, which increases the time delay between decelerated packets of ND and non-decelerated molecules, allowing for better energy resolution of subsequent reaction studies. We characterize this source of neutral, polar molecules suitable for energy-resolved reaction studies with trapped ions at cold translational temperatures. We also propose a combined apparatus consisting of the traveling-wave decelerator and a linear ion trap with a time-of-flight mass spectrometer and discuss to what extent it may achieve cold, energy-resolved, ion-neutral reactions.
对于低温离子 - 分子反应研究而言,产生高密度分子是一项基本挑战。行波斯塔克减速器有望提供高密度的冷极性分子束,但需要对高压电势进行精细控制。我们已经克服了这一实验挑战,并展示了在以10 kV振幅正弦波驱动减速器电极时,将ND连续减速至385米/秒至10米/秒。此外,我们测试了一种替代减速方案,该方案增加了减速后的ND分子束与未减速分子之间的时间延迟,从而为后续反应研究提供更好的能量分辨率。我们表征了这种适用于在冷平移温度下与捕获离子进行能量分辨反应研究的中性极性分子源。我们还提出了一种由行波减速器、带有飞行时间质谱仪的线性离子阱组成的组合装置,并讨论了它在多大程度上可以实现冷的、能量分辨的离子 - 中性反应。