21–24 Sept 2026
The Guildhall, York
Europe/London timezone

Development of an Ultrasensitive ICP-MS Assay Method for the Determination of Long-lived Radioisotopes in Gadolinium Used in Scintillator Materials

24 Sept 2026, 14:55
20m
The Guildhall (The Guildhall, York)

The Guildhall

The Guildhall, York

The Courtyard, Guildhall, Coney St, York YO1 9QN United Kingdom
Presentation Low-Background Assay Techniques Low-Background Assay Techniques 2

Speaker

Isaac Arnquist (Pacific Northwest National Laboratory)

Description

The development of ultra-low background gadolinium-loaded liquid scintillator (Gd-LS) is critical for current and next-generation experiments in neutrino and rare-event physics, including supernova neutrino detection, reactor monitoring, and as a neutron veto in dark matter searches. The presence of trace radioactive contaminants can introduce backgrounds that severely limit sensitivity. In this work, we present a novel, highly sensitive inductively coupled plasma mass spectrometry (ICP-MS) assay method capable of quantifying 238U, 235U, 232Th, and 40K at microBq/kg levels in organic gadolinium compounds used in scintillator production. The developed method incorporates an ultra-clean dry ashing and separation procedure that minimizes contaminant introduction during sample processing as well as spectral interferences and matrix effects during mass spectrometric analysis. The method has been successfully applied to the organic-based Gd(TMHA)3 material used in the LUX-ZEPLIN (LZ) experiment’s Gd-LS neutron veto, enabling a better understanding of the background contributions and ultimate sensitivity reach of the detector. This method provides a foundation for quality assurance in future low-background experiments utilizing Gd-LS and offers a high-throughput approach capable of processing batches of scintillator precursor compounds within days at sensitivities not achievable using other techniques.

Author

Isaac Arnquist (Pacific Northwest National Laboratory)

Co-authors

Dr Lawrence Horkley (Pacific Northwest National Laboratory) Dr Tyler Schlieder (Pacific Northwest National Laboratory) Dr Maria Laura di Vacri (Pacific Northwest National Laboratory) Dr Scott Haselschwardt (University of Michigan)

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