Semiconductor nanocrystals (“quantum dots”) are light emitters with high quantum yield that are relatively easy to manufacture. There is therefore much interest in their possible application for the development of high-performance scintillators for use in high-energy physics. However, few previous studies have focused on the response of these materials to high-energy particles. To evaluate the potential for the use of nanocomposite scintillators in calorimetry, we are performing side-by-side tests of fine-sampling shashlyk calorimeter prototypes with both conventional and nanocomposite scintillators using electron and minimum-ionizing particle beams, allowing direct comparison of the performance obtained

Development of nanocomposite scintillators for use in high-energy physics

Carsi, S.;Lezzani, G.;Mangiacavalli, S.;Perna, L.;Prest, M.;Selmi, A.;
2024-01-01

Abstract

Semiconductor nanocrystals (“quantum dots”) are light emitters with high quantum yield that are relatively easy to manufacture. There is therefore much interest in their possible application for the development of high-performance scintillators for use in high-energy physics. However, few previous studies have focused on the response of these materials to high-energy particles. To evaluate the potential for the use of nanocomposite scintillators in calorimetry, we are performing side-by-side tests of fine-sampling shashlyk calorimeter prototypes with both conventional and nanocomposite scintillators using electron and minimum-ionizing particle beams, allowing direct comparison of the performance obtained
2024
2024
2024
1069
169877
Inglese
nanocrystal, scintillator, calorimetry
262
Antonelli, A.; Auffray, E.; Brovelli, S.; Bruni, F.; Campajola, M.; Carsi, S.; Carulli, F.; De Nardo, G.; Di Meco, E.; Diociaiuti, E.; Erroi, A.; Fran...espandi
none
Articoli su Riviste::Articolo su Rivista
36
info:eu-repo/semantics/article
   Advancement and Innovation for Detectors at Accelerators
   AIDAinnova
   European Commission
   Horizon 2020 Framework Programme
   101004761
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11383/2179011
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