Background studies for the EDELWEISS dark matter experiment
E. Armengaud, C. Augier, A. Beno\^it, A. Beno\^it, L. Berg\'e, T., Bergmann, J. Bl\"umer, A. Broniatowski, V. Brudanin, B. Censier, M., Chapellier, F. Charlieux, F. Couedo, P. Coulter, G.A. Cox, M. De Jesus, J., Domange, A.-A. Drilien, L. Dumoulin, K. Eitel, D. Filosofov

TL;DR
This paper details background studies for the EDELWEISS dark matter experiment, including simulations of gamma and neutron backgrounds, to improve shielding and material purity for enhanced WIMP detection sensitivity.
Contribution
It presents comprehensive Monte Carlo simulations of background radiation for EDELWEISS-II and EDELWEISS-III, guiding improvements in shielding and material selection for future dark matter searches.
Findings
Gamma-ray background in EDELWEISS-II matches observed rates.
Neutron background estimates are consistent with observed events.
Enhanced shielding and material purity reduce background in EDELWEISS-III.
Abstract
The EDELWEISS-II collaboration has completed a direct search for WIMP dark matter using cryogenic Ge detectors (400 g each) and 384 kgdays of effective exposure. A cross-section of pb is excluded at 90% C.L. for a WIMP mass of 85 GeV. The next phase, EDELWEISS-III, aims to probe spin-independent WIMP-nucleon cross-sections down to a few pb. We present here the study of gamma and neutron background coming from radioactive decays in the set-up and shielding materials. We have carried out Monte Carlo simulations for the completed EDELWEISS-II setup with GEANT4 and normalised the expected background rates to the measured radioactivity levels (or their upper limits) of all materials and components. The expected gamma-ray event rate in EDELWEISS-II at 20-200 keV agrees with the observed rate of 82 events/kg/day within the uncertainties in the…
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