Rare-event search experiments located on-surface, such as short-baseline reactor neutrino experiments, are often limited by muon-induced background events. Highly efficient muon vetos are essential to reduce the detector background and to reach the sensitivity goals. We demonstrate the feasibility of deploying organic plastic scintillators at sub-Kelvin temperatures. For the NUCLEUS experiment, we developed a cryogenic muon veto equipped with wavelength shifting fibers and a silicon photo multiplier operating inside a dilution refrigerator. The achievable compactness of cryostat-internal integration is a key factor in keeping the muon rate to a minimum while maximizing coverage. The thermal and light output properties of a plastic scintillation detector were examined. We report first data on the thermal conductivity and heat capacity of the polystyrene-based scintillator UPS-923A over a wide range of temperatures extending below one Kelvin. The light output was measured down to 0.8 K and observed to increase by a factor of 1.61 ± 0.05 compared to 300 K. The development of an organic plastic scintillation muon veto operating in sub-Kelvin temperature environments opens new perspectives for rare-event searches with cryogenic detectors at sites lacking substantial overburden.

A plastic scintillation muon veto for sub-Kelvin temperatures / Erhart, A.; Wagner, V.; Wex, A.; Goupy, C.; Lhuillier, D.; Namuth, E.; Nones, C.; Rogly, R.; Savu, V.; Schwarz, M.; Strauss, R.; Vivier, M.; Abele, H.; Angloher, G.; Bento, A.; Burkhart, J.; Canonica, L.; Cappella, F.; Casali, N.; Cerulli, R.; Cruciani, A.; del Castello, G.; del Gallo Roccagiovine, M.; Doblhammer, A.; Dorer, S.; Friedl, M.; Garai, A.; Ghete, V. M.; Hauff, D.; Jeanneau, F.; Jericha, E.; Kaznacheeva, M.; Kinast, A.; Kluck, H.; Langenk(\,. - In: THE EUROPEAN PHYSICAL JOURNAL. C, PARTICLES AND FIELDS. - ISSN 1434-6044. - 84:1(2024), pp. 1-13. [10.1140/epjc/s10052-023-12375-0]

A plastic scintillation muon veto for sub-Kelvin temperatures

Cappella, F.;Casali, N.;Cruciani, A.;del Castello, G.;del Gallo Roccagiovine, M.;
2024

Abstract

Rare-event search experiments located on-surface, such as short-baseline reactor neutrino experiments, are often limited by muon-induced background events. Highly efficient muon vetos are essential to reduce the detector background and to reach the sensitivity goals. We demonstrate the feasibility of deploying organic plastic scintillators at sub-Kelvin temperatures. For the NUCLEUS experiment, we developed a cryogenic muon veto equipped with wavelength shifting fibers and a silicon photo multiplier operating inside a dilution refrigerator. The achievable compactness of cryostat-internal integration is a key factor in keeping the muon rate to a minimum while maximizing coverage. The thermal and light output properties of a plastic scintillation detector were examined. We report first data on the thermal conductivity and heat capacity of the polystyrene-based scintillator UPS-923A over a wide range of temperatures extending below one Kelvin. The light output was measured down to 0.8 K and observed to increase by a factor of 1.61 ± 0.05 compared to 300 K. The development of an organic plastic scintillation muon veto operating in sub-Kelvin temperature environments opens new perspectives for rare-event searches with cryogenic detectors at sites lacking substantial overburden.
2024
neutrino; muons; veto; particles & fields
01 Pubblicazione su rivista::01a Articolo in rivista
A plastic scintillation muon veto for sub-Kelvin temperatures / Erhart, A.; Wagner, V.; Wex, A.; Goupy, C.; Lhuillier, D.; Namuth, E.; Nones, C.; Rogly, R.; Savu, V.; Schwarz, M.; Strauss, R.; Vivier, M.; Abele, H.; Angloher, G.; Bento, A.; Burkhart, J.; Canonica, L.; Cappella, F.; Casali, N.; Cerulli, R.; Cruciani, A.; del Castello, G.; del Gallo Roccagiovine, M.; Doblhammer, A.; Dorer, S.; Friedl, M.; Garai, A.; Ghete, V. M.; Hauff, D.; Jeanneau, F.; Jericha, E.; Kaznacheeva, M.; Kinast, A.; Kluck, H.; Langenk(\,. - In: THE EUROPEAN PHYSICAL JOURNAL. C, PARTICLES AND FIELDS. - ISSN 1434-6044. - 84:1(2024), pp. 1-13. [10.1140/epjc/s10052-023-12375-0]
File allegati a questo prodotto
File Dimensione Formato  
Erhart_A-plastic-scintillation_2024.pdf

accesso aperto

Note: Articolo su rivista
Tipologia: Versione editoriale (versione pubblicata con il layout dell'editore)
Licenza: Creative commons
Dimensione 2.02 MB
Formato Adobe PDF
2.02 MB Adobe PDF

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1706278
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 0
  • ???jsp.display-item.citation.isi??? 0
social impact