Study of cosmogenic activation above ground for the DarkSide-20k experiment
DarkSide-20k Collaboration

TL;DR
This study estimates cosmogenic activation of materials in the DarkSide-20k dark matter experiment, focusing on induced radioisotopes during above-ground handling, to ensure background levels remain manageable for sensitive detection.
Contribution
It provides detailed estimates of cosmogenic activation rates for materials used in DarkSide-20k, informing preparation procedures to minimize background interference.
Findings
Activation in copper and stainless steel is not problematic.
39Ar activity induced is 2.8% of underground activity, deemed acceptable.
Other isotopes like 37Ar and 3H are negligible due to short half-lives.
Abstract
The activation of materials due to exposure to cosmic rays may become an important background source for experiments investigating rare event phenomena. DarkSide-20k, currently under construction at the Laboratori Nazionali del Gran Sasso, is a direct detection experiment for galactic dark matter particles, using a two-phase liquid-argon Time Projection Chamber (TPC) filled with 49.7 tonnes (active mass) of Underground Argon (UAr) depleted in 39Ar. Despite the outstanding capability of discriminating gamma/beta background in argon TPCs, this background must be considered because of induced dead time or accidental coincidences mimicking dark-matter signals and it is relevant for low-threshold electron-counting measurements. Here, the cosmogenic activity of relevant long-lived radioisotopes induced in the experiment has been estimated to set requirements and procedures during preparation…
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Taxonomy
TopicsDark Matter and Cosmic Phenomena · Atomic and Subatomic Physics Research · Radiation Therapy and Dosimetry
