High-resolution collision energy control through ion position modulation in atom-ion hybrid systems
Abstract
We demonstrate an ion shuttling technique for high-resolution control of atom-ion collision energy by translating an ion held within a radio-frequency trap through a magneto-optical atom trap. The technique is demonstrated both experimentally and through numerical simulations, with the experimental results indicating control of ion kinetic energies from K with a fractional resolution of and the simulations demonstrating that kinetic energy control up to K with a maximum predicted resolution of is possible, offering order-of-magnitude improvements over most alternative techniques. Lastly, we perform a proof-of-principle chemistry experiment using this technique and outline how the method may be refined in the future and applied to the study of molecular ion chemistry.
Cite
@article{arxiv.1808.07585,
title = {High-resolution collision energy control through ion position modulation in atom-ion hybrid systems},
author = {Prateek Puri and Michael Mills and Elizabeth P. West and Christian Schneider and Eric. R. Hudson},
journal= {arXiv preprint arXiv:1808.07585},
year = {2018}
}
Comments
12 pages, 6 figures