CC BY 4.0 UnportedOstermayr, T.M.Gebhard, J.Haffa, D.Kiefer, D.Kreuzer, C.Allinger, K.Bömer, C.Braenzel, J.Schnürer, M.Cermak, I.Schreiber, J.Hilz, P.2023-06-052023-06-052018https://oa.tib.eu/renate/handle/123456789/12390http://dx.doi.org/10.34657/11422We report on a Paul-trap system with large access angles that allows positioning of fully isolated micrometer-scale particles with micrometer precision as targets in high-intensity laser-plasma interactions. This paper summarizes theoretical and experimental concepts of the apparatus as well as supporting measurements that were performed for the trapping process of single particles.enghttps://creativecommons.org/licenses/by/4.0/530620Beam plasma interactionsLaser beamsLaser produced plasmasMicrometersA transportable Paul-trap for levitation and accurate positioning of micron-scale particles in vacuum for laser-plasma experimentsArticle