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Dark matter detector radioimpurities 129I and 210Pb measured with accelerator mass spectrometry

dc.contributor.authorSlavkovská, Zen_AU
dc.contributor.authorDastgiri, Fen_AU
dc.contributor.authorFifield, LKen_AU
dc.contributor.authorFroehlich, MBen_AU
dc.contributor.authorHotchkis, MACen_AU
dc.contributor.authorKoll, Den_AU
dc.contributor.authorMerchel, Sen_AU
dc.contributor.authorPavetich, Sen_AU
dc.contributor.authorTims, SGen_AU
dc.contributor.authorWallner, Aen_AU
dc.date.accessioned2026-08-06T00:27:28Zen_AU
dc.date.issued2026-01en_AU
dc.date.statistics2026-05-13en_AU
dc.description.abstractSodium iodide crystals doped with thallium NaI(Tl) can be used as detector material for direct dark matter detection by taking advantage of their particle detection properties of scintillation. In order to achieve this, it is crucial that these crystals are of ultra-high purity. Radioimpurities within the crystals may potentially mimic dark matter signals and thus must be quantified, minimised where possible and distinguished from real events. Abundances of radionuclides 129I and 210Pb, which are dominant sources of radioimpurities in NaI(Tl) crystals, were measured using accelerator mass spectrometry at the Australian National University (ANU) and the Australian Nuclear Science and Technology Organisation (ANSTO). NaI powder chemically processed to AgI, and, for the first time, unprocessed NaI powder, were shown to be suitable as AMS targets. A consistent 129I/127I ratio of (2.0 ± 0.3) × 10−13 was measured in three different commercially available NaI powders, one order of magnitude higher than the measured blank with (1.4 ± 0.3) × 10−14. Therefore, it was concluded that the choice of NaI powder has a negligible influence on the 129I contribution to low-background dark matter experiments. For 210Pb, different Pb molecular ion species were assessed with PbO 2 − being the preferred species and applied to investigate different lead oxide compounds for their suitability as Pb carriers. A 210Pb/Pb isotopic ratio of (3.6 ± 1.4 1.7) × 10−15 was measured in Pb 3 O 4 powder. This met the required lower activity limit of 210Pb when adding 1mg of stable lead into 1kg of NaI(Tl) powder with a desired maximum 210Pb/Pb isotopic ratio of 1 × 10−14. These results indicate the suitability of the investigated Pb 3 O 4 as a potential carrier for incorporation with Pb extracted from NaI used for dark matter experiments. © 2025 The Authors. Published by Elsevier B.V. Open Access CC BY 4.0.en_AU
dc.description.sponsorshipThe authors acknowledge the facilities and the scientific and technical assistance provided by Heavy Ion Accelerators (HIA) at the ANU and the Centre for Accelerator Science at ANSTO, supported by the Australian Government through the National Collaborative Research Infrastructure Strategy (NCRIS) program. This work was supported by the Australian Research Council’s Discovery scheme, project numbers DP140100136, DP180100495 and DP180100496, and the Centres of Excellence program, project number CE200100008.en_AU
dc.identifier.articlenumber165935en_AU
dc.identifier.citationSlavkovská, Z., Dastgiri, F., Fifield, L. K., Froehlich, M. B., Hotchkis, M. A. C., Koll, D., Merchel, S., Pavetich, S., Tims, S. G., & Wallner, A. (2026). Dark matter detector radioimpurities 129I and 210Pb measured with accelerator mass spectrometry. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms, 570, 165935. doi:10.1016/j.nimb.2025.165935en_AU
dc.identifier.issn0168-583Xen_AU
dc.identifier.journaltitleNuclear Instruments and Methods in Physics Research Section B Beam Interactions with Materials and Atomsen_AU
dc.identifier.urihttps://doi.org/10.1016/j.nimb.2025.165935en_AU
dc.identifier.urihttps://apo.ansto.gov.au/handle/10238/17296en_AU
dc.identifier.volume570en_AU
dc.languageEnglishen_AU
dc.language.isoenen_AU
dc.publisherElsevieren_AU
dc.subjectLeaden_AU
dc.subjectSodium iodidesen_AU
dc.subjectCrystal dopingen_AU
dc.subjectANSTOen_AU
dc.subjectIodineen_AU
dc.subjectCrystalsen_AU
dc.subjectThalliumen_AU
dc.titleDark matter detector radioimpurities 129I and 210Pb measured with accelerator mass spectrometryen_AU
dc.typeJournal Articleen_AU

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