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1.
Supernova Pointing Capabilities of DUNE / DUNE Collaboration
The determination of the direction of a stellar core collapse via its neutrino emission is crucial for the identification of the progenitor for a multimessenger follow-up. [...]
arXiv:2407.10339 ; FERMILAB-PUB-24-0319-LBNF.
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Fermilab Library Server - Fulltext - Fulltext
2.
Performance of a modular ton-scale pixel-readout liquid argon time projection chamber / DUNE Collaboration
The Module-0 Demonstrator is a single-phase 600 kg liquid argon time projection chamber operated as a prototype for the DUNE liquid argon near detector. Based on the ArgonCube design concept, Module-0 features a novel 80k-channel pixelated charge readout and advanced high-coverage photon detection system. [...]
arXiv:2403.03212; FERMILAB-PUB-24-0073-LBNF.- 2024-09-11 - 46 p. - Published in : Instruments 8 (2024) 41 Fulltext: 2403.03212 - PDF; a68f99fb0ea20981dbb416a651b29c4c - PDF; Fulltext from Publisher: PDF; External link: Fermilab Library Server
3.
Doping liquid argon with xenon in ProtoDUNE Single-Phase: effects on scintillation light / DUNE Collaboration
Doping of liquid argon TPCs (LArTPCs) with a small concentration of xenon is a technique for light-shifting and facilitates the detection of the liquid argon scintillation light. In this paper, we present the results of the first doping test ever performed in a kiloton-scale LArTPC. [...]
arXiv:2402.01568; CERN-EP-2024-024; FERMILAB-PUB-23-0819-LBNF.- Geneva : CERN, 2024-08-05 - 43 p. - Published in : JINST 19 (2024) P08005 Draft (restricted): PDF; Fulltext: CERN-EP-2024-024 - PDF; 2402.01568 - PDF; FERMILAB-PUB-23-0819-LBNF - PDF; Fulltext from Publisher: PDF; External link: Fermilab Library Server
4.
The DUNE Far Detector Vertical Drift Technology, Technical Design Report / DUNE Collaboration
DUNE is an international experiment dedicated to addressing some of the questions at the forefront of particle physics and astrophysics, including the mystifying preponderance of matter over antimatter in the early universe. The dual-site experiment will employ an intense neutrino beam focused on a near and a far detector as it aims to determine the neutrino mass hierarchy and to make high-precision measurements of the PMNS matrix parameters, including the CP-violating phase. [...]
arXiv:2312.03130; FERMILAB-TM-2813-LBNF.- 2024-08-09 - 17 p. - Published in : JINST 19 (2024) T08004 Fulltext: PDF; Fulltext from Publisher: PDF; External link: Fermilab Library Server
5.
Performance of the CMS High Granularity Calorimeter prototype to charged pion beams of 20–300 GeV/c / CALICE Collaboration
The upgrade of the CMS experiment for the high luminosity operation of the LHC comprises the replacement of the current endcap calorimeter by a high granularity sampling calorimeter (HGCAL). The electromagnetic section of the HGCAL is based on silicon sensors interspersed between lead and copper (or copper tungsten) absorbers. [...]
arXiv:2211.04740.- 2023-08-14 - 31 p. - Published in : JINST 18 (2023) P08014 Fulltext: 2211.04740 - PDF; FERMILAB-PUB-23-299-ETD-PPD - PDF; Fulltext from Publisher: PDF; External link: Fermilab Library Server
6.
Design, Construction and Commissioning of a Technological Prototype of a Highly Granular SiPM-on-tile Scintillator-Steel Hadronic Calorimeter / CALICE Collaboration
The CALICE collaboration is developing highly granular electromagnetic and hadronic calorimeters for detectors at future energy frontier electron-positron colliders. After successful tests of a physics prototype, a technological prototype of the Analog Hadron Calorimeter has been built, based on a design and construction techniques scalable to a collider detector. [...]
arXiv:2209.15327; CALICE-PUB-2022-003.- 2023-11-22 - 37 p. - Published in : JINST 18 (2023) P11018 Fulltext: 2209.15327 - PDF; document - PDF;
7.
Energy reconstruction of hadronic showers at the CERN PS and SPS using the Semi-Digital Hadronic Calorimeter / CALICE Collaboration
The CALICE Semi-Digital Hadronic CALorimeter (SDHCAL) is the first technological prototype in a family of high-granularity calorimeters developed by the CALICE Collaboration to equip the experiments of future lepton colliders. The SDHCAL is a sampling calorimeter using stainless steel for absorber and Glass Resistive Plate Chambers (GRPC) as a sensitive medium. [...]
arXiv:2202.09684; CALICE-PUB-2022-001.- 2022-07-07 - 21 p. - Published in : JINST 17 (2022) P07017 Fulltext: PDF;
8.
SiW Ecal Compact Digital Electronics: implementation & performance in test beam / Pöschl, R. (CNRS-LAL) ; Breton, D. (SERDI, CNRS-LAL) ; Jeglot, J. (SERDI, CNRS-LAL) ; Maalmi, J. (SERDI, CNRS-LAL) ; Rusquart, P. (SERDI, CNRS-LAL) ; Saussac, A. (SERDI, CNRS-LAL) ; Thiebault, A. (SDTM, CNRS-LAL) ; Bonis, J. (SDTM, CNRS-LAL) ; Douillet, D. (SDTM, CNRS-LAL) ; Gallas, A. (SDTM, CNRS-LAL) et al.
AIDA-2020-SLIDE-2020-005.- Geneva : CERN, 2020 Fulltext: PDF;
9.
Particle Identification Using Boosted Decision Trees in the Semi-Digital Hadronic Calorimeter Prototype / CALICE Collaboration
The CALICE Semi-Digital Hadronic CALorimeter (SDHCAL) prototype using Glass Resistive Plate Chambers as a sensitive medium is the first technological prototype of a family of high-granularity calorimeters developed by the CALICE collaboration to equip the experiments of future leptonic colliders. It was exposed to beams of hadrons, electrons and muons several times in the CERN PS and SPS beamlines between 2012 and 2018. [...]
arXiv:2004.02972; CALICE-PUB-2020-001.- 2020-10-13 - 17 p. - Published in : JINST 15 (2020) P10009 Fulltext: PDF;
10.
Beam test performance of the highly granular SiW-ECAL technological prototype for the ILC / Irles, A. (CNRS-LAL) ; Kawagoe, K. (Kyushu University) ; Miura, Y. (Kyushu University) ; Sekiya, I. (Kyushu University) ; Suehara, T. (Kyushu University) ; Yoshioka, T. (Kyushu University) ; Bilokin, S. (CNRS-IPHC) ; Bonis, J. (CNRS-LAL) ; Cornebise, P. (CNRS-LAL) ; Gallas, A. (CNRS-LAL) et al.
The technological prototype of the CALICE highly granular silicon-tungsten electromagnetic calorimeter (SiW-ECAL)was tested in a beam at DESY in 2017. The setup comprised seven layers of silicon sensors. [...]
AIDA-2020-PUB-2020-001; arXiv:1902.00110; KYUSHU-RCAPP-2019-04.- Geneva : CERN, 2020 - 7 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 950 (2020) 162969 Fulltext: PDF;

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