Ultra-Low Background Germanium Assay at the Boulby Underground Laboratory

Fuente: arXiv
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Auteurs principaux: Scovell, P. R., Meehan, E., Paling, S. M., Thiesse, M., Liu, X., Ghag, C., Ginsz, M., Quirin, P., Ralet, D.
Format: Preprint
Publié: 2023
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author Scovell, P. R.
Meehan, E.
Paling, S. M.
Thiesse, M.
Liu, X.
Ghag, C.
Ginsz, M.
Quirin, P.
Ralet, D.
author_facet Scovell, P. R.
Meehan, E.
Paling, S. M.
Thiesse, M.
Liu, X.
Ghag, C.
Ginsz, M.
Quirin, P.
Ralet, D.
contents As we move to an era where next generation low-background particle physics experiments begin to be designed and constructed, the ability to assay materials with high sensitivity and at speed with a variety of techniques will be key. This paper describes the Mirion Technologies (Canberra) specialty ultra-low background detectors installed and commissioned at the Boulby Underground Laboratory between 2017 and 2021. The low background levels of the detectors combine with low background shielding and a radon-reduced dry nitrogen purge system to give sensitivity approaching the best in the world without the need for intricate shielding solutions. For an optimised sample geometry, run for 100 days, it would be possible to reach close to 10 $μ$Bq/kg ($10^{-12}$ g/g) for background isotopes of interest in neutrinoless double-beta decay.
format Preprint
id arxiv_https___arxiv_org_abs_2308_03444
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Ultra-Low Background Germanium Assay at the Boulby Underground Laboratory
Scovell, P. R.
Meehan, E.
Paling, S. M.
Thiesse, M.
Liu, X.
Ghag, C.
Ginsz, M.
Quirin, P.
Ralet, D.
Instrumentation and Detectors
As we move to an era where next generation low-background particle physics experiments begin to be designed and constructed, the ability to assay materials with high sensitivity and at speed with a variety of techniques will be key. This paper describes the Mirion Technologies (Canberra) specialty ultra-low background detectors installed and commissioned at the Boulby Underground Laboratory between 2017 and 2021. The low background levels of the detectors combine with low background shielding and a radon-reduced dry nitrogen purge system to give sensitivity approaching the best in the world without the need for intricate shielding solutions. For an optimised sample geometry, run for 100 days, it would be possible to reach close to 10 $μ$Bq/kg ($10^{-12}$ g/g) for background isotopes of interest in neutrinoless double-beta decay.
title Ultra-Low Background Germanium Assay at the Boulby Underground Laboratory
topic Instrumentation and Detectors
url https://arxiv.org/abs/2308.03444