Simulating the stopping dynamics of highly charged ions in an ultra-cold, strongly coupled plasma


Simulating the stopping dynamics of highly charged ions in an ultra-cold, strongly coupled plasma

Bussmann, M.; Schramm, U.; Habs, D.

We introduce a method for stopping highly charged ions (HCIs) in a laser-cooled one-component plasma (OCP) of 24Mg+ ions and present results on stopping times derived from realistic molecular dynamics simulations of the complete stopping process. This stopping scheme can provide ultra-cold highly charged ions for future in-trap precision mass measurements. The choice of an ultra-cold ion plasma as a stopping medium is governed by the almost negligible charge exchange of the HCI with the laser-cooled ions and the very low temperatures which can be reached. In our analysis we focus on the stability and fast recooling of the plasma – two features essential for the experimental realization of this stopping scheme.

Keywords: 02.70.Ns; 34.50.Bw; 32.80.Pj; 21.10.Dr; 52.27.Gr; 52.27.Jt; Stopping; Highly charged ions; Laser cooling; Plasma; Strong coupling; Molecular dynamics simulation

Permalink: https://www.hzdr.de/publications/Publ-10597