1.
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Beam test results of a fully 3D-printed plastic scintillator particle detector prototype
/ Li, Botao (Zurich, ETH) ; Weber, Tim (Zurich, ETH) ; Kose, Umut (Zurich, ETH) ; Franks, Matthew (Zurich, ETH) ; Wüthrich, Johannes (Zurich, ETH) ; Zhao, Xingyu (Zurich, ETH) ; Sgalaberna, Davide (Zurich, ETH) ; Boyarintsev, Andrey (Inst. Scintill. Mat., Kharkiv) ; Sibilieva, Tetiana (Inst. Scintill. Mat., Kharkiv) ; Berns, Siddartha (Unlisted, CH) et al.
Plastic scintillators are widely used for the detection of elementary particles, and 3D reconstruction of particle tracks is achieved by segmenting the detector into 3D granular structures. In this study, we present a novel prototype fabricated by additive manufacturing, consisting of a 5 x 5 x 5 array of 1 cm3 plastic scintillator cubes, each optically isolated. [...]
arXiv:2412.10174.-
2025 - 8 p.
- Published in : JINST 20 (2025) P04008
Fulltext: 2412.10174 - PDF; document - PDF;
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2.
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Additive manufacturing of a 3D-segmented plastic scintillator detector for tracking and calorimetry of elementary particles
/ Weber, Tim (Zurich, ETH) ; Boyarintsev, Andrey (Inst. Scintill. Mat., Kharkiv) ; Kose, Umut (Zurich, ETH) ; Li, Boato (Zurich, ETH) ; Sgalaberna, Davide (Zurich, ETH) ; Sibilieva, Tetiana (Inst. Scintill. Mat., Kharkiv) ; Berns, Siddartha (Fribourg U. ; Appl. Sci. U. Solothurn ; Laval U.) ; Boillat, Eric (Fribourg U. ; Appl. Sci. U. Solothurn ; Laval U.) ; De Roeck, Albert (CERN) ; Dieminger, Till (Zurich, ETH) et al.
Plastic-scintillator detectors are devices used for the detection of elementary particles. They provide good particle identification with excellent time resolution, whilst being inexpensive due to the affordability of plastic materials. [...]
arXiv:2312.04672.-
2025 - 11 p.
- Published in : Commun. Eng. 4 (2025) 41
Fulltext: 2312.04672 - PDF; publication - PDF;
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3.
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4.
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Additive manufacturing of inorganic scintillator-based particle detectors
/ Sibilieva, T. (Inst. Scintill. Mat., Kharkiv) ; Alekseev, V. (Inst. Scintill. Mat., Kharkiv) ; Barsuk, S. (IJCLab, Orsay) ; Berns, S. (Fribourg U.) ; Boillat, E. (Fribourg U.) ; Boiaryntseva, I. (Inst. Scintill. Mat., Kharkiv ; IJCLab, Orsay) ; Boyarintsev, A. (Inst. Scintill. Mat., Kharkiv) ; Carbone, A. (INFN, Pisa ; OCEM, Bologna) ; De Roeck, A. (CERN) ; Dolan, S. (CERN) et al.
Inorganic scintillators are widely used for scientific, industrial and medical applications. The development of 3D printing with inorganic scintillators would allow fast creation of detector prototypes for registration of ionizing radiation, such as alpha and beta, gamma particles in thin layers of active material and soft X-ray radiation. [...]
arXiv:2212.13394.-
2023-03-07 - 14 p.
- Published in : JINST 18 (2023) P03007
Fulltext: 2212.13394 - PDF; document - PDF;
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5.
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6.
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The upgrade of the ALICE TPC with GEMs and continuous readout
/ ALICE TPC Collaboration
The upgrade of the ALICE TPC will allow the experiment to cope with the high interaction rates foreseen for the forthcoming Run 3 and Run 4 at the CERN LHC. In this article, we describe the design of new readout chambers and front-end electronics, which are driven by the goals of the experiment. [...]
arXiv:2012.09518.-
2021-03-15 - 87 p.
- Published in : JINST
Fulltext: PDF;
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7.
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Upgrade of the T2K Near Detector
/ Nessi, M et al.
- ND280.
Approved: 05 March 2019.-
Status: Completed on 17 June 2024
Experiment: NP07
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8.
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Forward search experiment at the LHC
/ Prim, M T et al.
Approved: 05 March 2019.-
Status: Data Taking
Experiment: FASER
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9.
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SAMPA Chip: the New 32 Channels ASIC for the ALICE TPC and MCH Upgrades
/ Adolfsson, J (Lund U.) ; Pabon, A Ayala (Sao Paulo U.) ; Bregant, M (Sao Paulo U.) ; Britton, C (Oak Ridge) ; Brulin, G (Orsay, IPN) ; Carvalho, D (Sao Paulo U.) ; Chambert, V (Orsay, IPN) ; Chinellato, D (Campinas State U.) ; Espagnon, B (Orsay, IPN) ; Herrera, H D Hernandez (Sao Paulo U.) et al.
This paper presents the test results of the second prototype of SAMPA, the ASIC designed for the upgrade of read-out front end electronics of the ALICE Time Projection Chamber (TPC) and Muon Chamber (MCH). SAMPA is made in a 130 nm CMOS technology with 1.25 V nominal voltage supply and provides 32 channels, with selectable input polarity, and three possible combinations of shaping time and sensitivity. [...]
2017 - 3 p.
- Published in : JINST 12 (2017) C04008
In : Topical Workshop on Electronics for Particle Physics, Karlsruhe, Germany, 26 - 30 Sep 2016, pp.C04008
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10.
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SAMPA chip: a new ASIC for the ALICE TPC and MCH upgrades
/ Barboza, S H I (Sao Paulo U.) ; Bregant, M (Sao Paulo U.) ; Chambert, V (Orsay, IPN) ; Espagnon, B (Orsay, IPN) ; Herrera, H D Hernandez (Sao Paulo U.) ; Mahmood, S M (Oslo U.) ; Moraes, D (Sao Paulo, Inst. Tech. Aeronautics) ; Munhoz, M G (Sao Paulo U.) ; Noël, G (Orsay, IPN) ; Pilyar, A (Dubna, JINR) et al.
This paper presents the SAMPA, an ASIC designed for the upgrade of read-out front end electronics of the ALICE Time Projection Chamber (TPC) and Muon Chambers (MCH). SAMPA is made in a 130 nm CMOS technology with 1.25 V nominal voltage supply and includes 32 channels, with selectable input polarity, and five possible combinations of shaping time and sensitivity. [...]
2016
- Published in : JINST 11 (2016) C02088
In : Topical Workshop on Electronics for Particle Physics, Lisbon, Portugal, 28 Sep - 2 Oct 2015, pp.C02088
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