English

Evaluation and mitigation of trace $^{210}$Pb contamination on copper surfaces

Instrumentation and Detectors 2020-04-14 v2 High Energy Physics - Experiment

Abstract

Clean materials are required to construct and operate many low-background physics experiments. High-purity copper has found broad use because of its physical properties and availability. In this paper, we describe methods to assay and mitigate 210^{210}Pb contamination on copper surfaces, such as from exposure to environmental radon or coming from bulk impurities. We evaluated the efficacy of wet etching on commercial samples and observed that 210^{210}Po contamination from the copper bulk does not readily pass into solution. During the etch, the polonium appears to trap at the copper-etchant boundary, such that it is effectively concentrated at the copper surface. We observed a different behavior for 210^{210}Pb; high-sensitivity measurements of the alpha emissivity versus time indicate the lowest level of 210^{210}Pb contamination ever reported for a commercial copper surface: 0±120\pm12 nBq/cm2^2 (1σ\sigma). Additionally, we have demonstrated the effectiveness of mitigating trace 210^{210}Pb and 210^{210}Po surface backgrounds using custom, high-purity electroplating techniques. These approaches were evaluated utilizing assays performed with an XIA UltraLo-1800 alpha spectrometer.

Keywords

Cite

@article{arxiv.2003.06357,
  title  = {Evaluation and mitigation of trace $^{210}$Pb contamination on copper surfaces},
  author = {Raymond Bunker and Tsuguo Aramaki and Isaac Arnquist and Robert Calkins and Jodi Cooley and Eric Hoppe and John Orrell and Kimbrelle Thommasson},
  journal= {arXiv preprint arXiv:2003.06357},
  year   = {2020}
}

Comments

Published in Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment Volume 967, 1 July 2020, 163870

R2 v1 2026-06-23T14:14:08.758Z