Ion manipulation from liquid Xe to vacuum: Ba-tagging for a nEXO upgrade and future $0 \nu \beta \beta$ experiments
Abstract
Neutrinoless double beta decay {()} provides a way to probe physics beyond the Standard Model of particle physics. The upcoming nEXO experiment will search for decay in Xe with a projected half-life sensitivity exceeding years at the 90\% confidence level using a liquid xenon (LXe) Time Projection Chamber (TPC) filled with 5 tonnes of Xe enriched to 90\% in the {}-decaying isotope Xe. In parallel, a potential future upgrade to nEXO is being investigated with the aim to further suppress radioactive backgrounds and to confirm -decay events. This technique, known as Ba-tagging, comprises extracting and identifying the -decay daughter Ba ion. One tagging approach being pursued involves extracting a small volume of LXe in the vicinity of a potential -decay using a capillary tube and facilitating a liquid-to-gas phase transition by heating the capillary exit. The Ba ion is then separated from the accompanying Xe gas using a radio-frequency (RF) carpet and RF funnel, conclusively identifying the ion as Ba via laser-fluorescence spectroscopy and mass spectrometry. Simultaneously, an accelerator-driven Ba ion source is being developed to validate and optimize this technique. The motivation for the project, the development of the different aspects, along with the current status and results, are discussed here.
Keywords
Cite
@article{arxiv.2410.18138,
title = {Ion manipulation from liquid Xe to vacuum: Ba-tagging for a nEXO upgrade and future $0 \nu \beta \beta$ experiments},
author = {Dwaipayan Ray and Robert Collister and Hussain Rasiwala and Lucas Backes and Ali V. Balbuena and Thomas Brunner and Iroise Casandjian and Chris Chambers and Megan Cvitan and Tim Daniels and Jens Dilling and Ryan Elmansali and William Fairbank and Daniel Fudenberg and Razvan Gornea and Giorgio Gratta and Alec Iverson and Anna A. Kwiatkowski and Kyle G. Leach and Annika Lennarz and Zepeng Li and Melissa Medina-Peregrina and Kevin Murray and Kevin O Sullivan and Regan Ross and Raad Shaikh and Xiao Shang and Joseph Soderstrom and Victor Varentsov and Liang Yang},
journal= {arXiv preprint arXiv:2410.18138},
year = {2025}
}
Comments
23 pages, 15 figures