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Development of a Quality Assurance Process for the SoLid Experiment
- Source :
- JINST, JINST, 2019, 14 (02), pp.P02014. ⟨10.1088/1748-0221/14/02/P02014⟩, Journal of Instrumentation, Journal of Instrumentation, IOP Publishing, 2019, 14 (02), pp.P02014. ⟨10.1088/1748-0221/14/02/P02014⟩, Journal of instrumentation, JOURNAL OF INSTRUMENTATION, Abreu, Y, Amhis, Y, Ban, G, Beaumont, W, Binet, S, Bongrand, M, Boursette, D, Castle, B C, Chanal, H, Clark, K, Coupé, B, Crochet, P, Cussans, D, Roeck, A D, Durand, D, Fallot, M, Ghys, L, Giot, L, Graves, K, Guillon, B, Henaff, D, Hosseini, B, Ihantola, S, Jenzer, S, Kalcheva, S, Kalousis, L N, Labare, M, Lehaut, G, Manley, S, Manzanillas, L, Mermans, J, Michiels, I, Monteil, S, Moortgat, C, Newbold, D, Park, J, Pestel, V, Petridis, K, Piñera, I, Popescu, L, Ryckbosch, D, Ryder, N, Saunders, D, Schune, M H, Settimo, M, Simard, L, Vacheret, A, Vandierendonck, G, Dyck, S V, Mulders, P V, Remortel, N V, Vercaemer, S, Verstraeten, M, Viaud, B, Weber, A & Yermia, F 2019, ' Development of a quality assurance process for the SoLid experiment ', Journal of Instrumentation, vol. 14, no. 2, P02014 . https://doi.org/10.1088/1748-0221/14/02/P02014
- Publication Year :
- 2019
- Publisher :
- HAL CCSD, 2019.
-
Abstract
- The SoLid experiment has been designed to search for an oscillation pattern induced by a light sterile neutrino state, utilising the BR2 reactor of SCK$\bullet$CEN, in Belgium. The detector leverages a new hybrid technology, utilising two distinct scintillators in a cubic array, creating a highly segmented detector volume. A combination of 5 cm cubic polyvinyltoluene cells, with $^6$LiF:ZnS(Ag) sheets on two faces of each cube, facilitate reconstruction of the neutrino signals. % The polyvinyltoluene scintillator is used as an $\overline{\nu}_e$ target for the inverse beta decay of ($\overline{\nu}_e + p \rightarrow e^{+}+n$), with the $^6$LiF:ZnS(Ag) sheets used for associated neutron detection. Scintillation signals are read out by a network of wavelength shifting fibres connected to multipixel photon counters. Whilst the high granularity provides a powerful toolset to discriminate backgrounds; by itself the segmentation also represents a challenge in terms of homogeneity and calibration, for a consistent detector response. The search for this light sterile neutrino implies a sensitivity to distortions of around $\mathcal{O}$(10)\% in the energy spectrum of reactor $\overline{\nu}_e$. Hence, a very good neutron detection efficiency, light yield and homogeneous detector response are critical for data validation. The minimal requirements for the SoLid physics program are a light yield and a neutron detection efficiency larger than 40 PA/MeV/cube and 50 \% respectively. In order to guarantee these minimal requirements, the collaboration developed a rigorous quality assurance process for all 12800 cubic cells of the detector. To carry out the quality assurance process, an automated calibration system called CALIPSO was designed and constructed.<br />Comment: Submitted to JINST
- Subjects :
- Technology
Physics - Instrumentation and Detectors
01 natural sciences
09 Engineering
030218 nuclear medicine & medical imaging
High Energy Physics - Experiment
thermal
High Energy Physics - Experiment (hep-ex)
Particle identification methods
0302 clinical medicine
n: irradiation
n: detector
[PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex]
Neutron detection
Neutrino detectors
gamma ray: irradiation
Instrumentation
Instruments & Instrumentation
physics.ins-det
Physics
02 Physical Sciences
Detector
Instrumentation and Detectors (physics.ins-det)
neutrino: sterile
Nuclear & Particles Physics
quality
Inverse beta decay
Mathematical physics
zinc: sulfur
Neutrino
photon: yield
organic compounds
Neutron detectors (cold, thermal, fast neutrons)
lithium: fluorine
fast neutrons)
Particle physics
FOS: Physical sciences
fabrication
Scintillator
03 medical and health sciences
Calorimeters
0103 physical sciences
Sensitivity (control systems)
[PHYS.PHYS.PHYS-INS-DET]Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det]
detector: design
scintillation counter
Scintillation
Science & Technology
010308 nuclear & particles physics
hep-ex
Order (ring theory)
calibration
Neutron detectors (cold
Physics and Astronomy
efficiency
High Energy Physics::Experiment
nuclear reactor
Subjects
Details
- Language :
- English
- ISSN :
- 17480221, 16741137, and 00189499
- Database :
- OpenAIRE
- Journal :
- JINST, JINST, 2019, 14 (02), pp.P02014. ⟨10.1088/1748-0221/14/02/P02014⟩, Journal of Instrumentation, Journal of Instrumentation, IOP Publishing, 2019, 14 (02), pp.P02014. ⟨10.1088/1748-0221/14/02/P02014⟩, Journal of instrumentation, JOURNAL OF INSTRUMENTATION, Abreu, Y, Amhis, Y, Ban, G, Beaumont, W, Binet, S, Bongrand, M, Boursette, D, Castle, B C, Chanal, H, Clark, K, Coupé, B, Crochet, P, Cussans, D, Roeck, A D, Durand, D, Fallot, M, Ghys, L, Giot, L, Graves, K, Guillon, B, Henaff, D, Hosseini, B, Ihantola, S, Jenzer, S, Kalcheva, S, Kalousis, L N, Labare, M, Lehaut, G, Manley, S, Manzanillas, L, Mermans, J, Michiels, I, Monteil, S, Moortgat, C, Newbold, D, Park, J, Pestel, V, Petridis, K, Piñera, I, Popescu, L, Ryckbosch, D, Ryder, N, Saunders, D, Schune, M H, Settimo, M, Simard, L, Vacheret, A, Vandierendonck, G, Dyck, S V, Mulders, P V, Remortel, N V, Vercaemer, S, Verstraeten, M, Viaud, B, Weber, A & Yermia, F 2019, ' Development of a quality assurance process for the SoLid experiment ', Journal of Instrumentation, vol. 14, no. 2, P02014 . https://doi.org/10.1088/1748-0221/14/02/P02014
- Accession number :
- edsair.doi.dedup.....e44cb19277b1430bbe473c87b6767ab5
- Full Text :
- https://doi.org/10.1088/1748-0221/14/02/P02014⟩