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QUEST-DMC: Background Modelling and Resulting Heat Deposit for a Superfluid Helium-3 Bolometer

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arxiv 2402.00181 v2 pith:UNMVUJMV submitted 2024-01-31 cond-mat.other physics.ins-det

classification cond-mat.otherphysics.ins-det
keywords heatmaterialbackgroundbolometerconsidereddarkeventsexperiments
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We report the results of radioactivity assays and heat leak calculations for a range of common cryogenic materials, considered for use in the QUEST-DMC superfluid 3He dark matter detector. The bolometer, instrumented with nanomechanical resonators, will be sensitive to energy deposits from dark matter interactions. Events from radioactive decays and cosmic rays constitute a significant background and must be precisely modelled, using a combination of material screening and Monte Carlo simulations. However, the results presented here are of wider interest for experiments and quantum devices sensitive to minute heat leaks and spurious events, thus we present heat leak per unit mass or surface area for every material studied. This can inform material choices for other experiments, especially if underground operation is considered where the radiogenic backgrounds will dominate even at shallow depths.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Dark Matter Attenuation Effects: Sensitivity Ceilings for Spin-Dependent and Spin-Independent Interactions

    hep-ph 2025-02 conditional novelty 5.0 of 10

    For sub-GeV dark matter, using a diffusive random-walk model of atmospheric scattering lowers the projected sensitivity ceiling of the QUEST-DMC detector by about a factor of two compared with the straight-line approximation.

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