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Updated: Jan 14, 2026

Preparing an Isotopically Pure 229Th Ion Beam for Studies of 229mTh
Published on: May 3, 2019
A cryogenic Paul trap for probing the nuclear isomeric excited state 229 m Th 3 +
Daniel Moritz1, Kevin Scharl1, Markus Wiesinger1
1Fakultät für Physik, LMU München, 85748 Garching bei München, Germany.
Abstract:
While laser excitation of the nuclear isomeric transition in Th has been recently achieved for thorium atoms embedded in large-bandgap crystals, laser excitation and characterization of the nuclear transition in trapped Th ions has not yet been accomplished. To address these experiments, a cryogenic Paul trap setup has been designed, built, and commissioned at LMU Munich. Here, we present the specifications of the new experimental platform and demonstrate its successful operation, showing the extraction, subsequent ion guiding, mass purification, and trapping of Th and Th ions from a newly designed buffer-gas stopping cell as well as of Sr ions from laser ablation of a solid target. Further, we show sympathetic laser cooling of Th by Doppler-cooled Sr ions and the formation of mixed-species Coulomb crystals.
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