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CERN Document Server 2,025 záznamov nájdených  1 - 10ďalšíkoniec  skoč na záznam: Hľadanie trvalo 0.28 sekúnd. 
1.
Design of the cryogenic systems for the Near and Far LAr-TPC detectors of the Short-Baseline Neutrino program (SBN) at Fermilab / Geynisman, M (Fermilab) ; Bremer, J (CERN) ; Chalifour, M (CERN) ; Delaney, M (Fermilab) ; Dinnon, M (Fermilab) ; Doubnik, R (Fermilab) ; Hentschel, S (Fermilab) ; Kim, M J (Fermilab) ; Montanari, C (INFN, Pavia) ; Montanari, D (Fermilab) et al.
The Short-Baseline Neutrino (SBN) physics program at Fermilab and Neutrino Platform (NP) at CERN are part of the international Neutrino Program leading to the development of Long-Baseline Neutrino Facility/Deep Underground Neutrino Experiment (LBNF/DUNE) science project. The SBN program consisting of three Liquid Argon Time Projection Chamber (LAr-TPC) detectors positioned along the Booster Neutrino Beam (BNB) at Fermilab includes an existing detector known as MicroBooNE (170-ton LAr-TPC) plus two new experiments known as SBN’s Near Detector (SBND, ~260 tons) and SBN’s Far Detector (SBN-FD, ~760 tons). [...]
FERMILAB-CONF-17-158-ND.- 2017 - 8 p. - Published in : IOP Conf. Ser. Mater. Sci. Eng. 278 (2017) 012119 Fulltext: fermilab-conf-17-158-nd - PDF; pdf - PDF; External link: FERMILABCONF
In : 2017 Cryogenic Engineering Conference and International Cryogenic Materials Conference, Madison, WI, USA, 9 - 13 Jul 2017, pp.012119
2.
Overview of the Liquid Argon Cryogenics for the Short Baseline Neutrino Program (SBN) at Fermilab / Norris, Barry (Fermilab) ; Bremer, Johan (CERN) ; Chalifour, Michel (CERN) ; Delaney, Mike (Fermilab) ; Dinnon, Mike (Fermilab) ; Doubnik, Roza (Fermilab) ; Geynisman, Michael (Fermilab) ; Hentschel, Steve (Fermilab) ; Kim, Min Jeong (Fermilab) ; Stefanik, Andy (Fermilab) et al.
The Short-Baseline Neutrino (SBN) physics program will involve three LAr-TPC detectors located along the Booster Neutrino Beam (BNB) at Fermilab. This new SBN Program will deliver a rich and compelling physics opportunity, including the ability to resolve a class of experimental anomalies in neutrino physics and to perform the most sensitive search to date for sterile neutrinos at the eV mass-scale through both appearance and disappearance oscillation channels. [...]
FERMILAB-CONF-17-023-ND.- 2017 - 6 p. - Published in : 10.18462/iir.cryo.2017.039 Fulltext: PDF; External link: FERMILABCONF
In : 14th Cryogenics 2017 IIR International Conference, Dresden, Germany, 15 - 19 May 2017, pp.039
3.
Development and Physics Opportunities with LArTPC at Short Baseline Neutrino Experiment at Fermilab / Chatterjee, Animesh (Ahmedabad, Phys. Res. Lab ; CERN)
Liquid argon time-projection chamber (LArTPC) detectors have unique and powerful properties for neutrino physics and beyond-the-standard-model (BSM) searches. A LArTPC provides precise digital readout of charged particle trajectories, enabling a detailed picture of the aftermath of neutrino and BSM particle interactions. [...]
2024 - 4 p. - Published in : Springer Proc. Phys. 304 (2024) 601-604
In : 25th DAE-BRNS High Energy Physics Symposium (DAE BRNS 2022), Punjab, India, 12 - 16 Dec 2022, pp.601-604
4.
ICARUS report to the CXVIII Meeting of SPSC, June 23-24, 2015 / Gibin, D Dipartimento di Fisica e Atronomia Università di Padova Italy ; Kisiel, J Institute of Physics University of Silesia Katowice Poland
The ICARUS-T600 detector, with about 500 ton of sensitive mass, is the largest LAr TPC ever constructed representing the state of the art for this detection technology. [...]
CERN-SPSC-2015-024 ; SPSC-SR-163.
- 2015.
Fulltext
5.
The light collection system of ICARUS T600 detector for the Short Baseline Neutrino (SBN) experiment at Fermilab / Babicz, Marta
CERN-THESIS-2017-206 - 115 p.

Fulltext
6.
A Proposal for a Three Detector Short-Baseline Neutrino Oscillation Program in the Fermilab Booster Neutrino Beam / ICARUS-WA104 Collaboration
A Short-Baseline Neutrino (SBN) physics program of three LAr-TPC detectors located along the Booster Neutrino Beam (BNB) at Fermilab is presented. [...]
arXiv:1503.01520 ; FERMILAB-PUB-15-0726-AD-PPD.
- 2015 - 209.
Fermilab Library Server - Full text - Fulltext - Fulltext
7.
Linearity and saturation properties of Hamamatsu R5912-MOD photomultiplier tube for the ICARUS T600 light detection system / Babicz, Marta (CERN ; Cracow, INP) ; Bellini, Vincenzo (INFN, Catania ; Catania U.) ; Bonesini, Maurizio (INFN, Milan Bicocca) ; Cervi, Tommaso (INFN, Pavia ; Pavia U.) ; Falcone, Andrea (Texas U., Arlington (main)) ; Menegolli, Alessandro (INFN, Pavia ; Pavia U.) ; Montanari, Claudio (Pavia U. ; INFN, Pavia) ; Pietropaolo, Francesco (CERN) ; Raselli, Gian Luca (Pavia U. ; INFN, Pavia) ; Rossella, Massimo (INFN, Pavia ; Pavia U.) et al.
The ICARUS T600 liquid argon time projection chamber (LAr-TPC) will operate at shallow depth as far detector for the Short Baseline Neutrino (SBN) program at FNAL. A new scintillation light detection system, based on 360 Hamamatsu R5912-MOD Photomultiplier Tubes (PMTs), will allow to distinguish the actual beam related events from the huge cosmic background. [...]
Elsevier, 2019 - 2 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 936 (2019) 554-555
In : Frontier Detectors for Frontier Physics: XIV Pisa Meeting on Advanced Detectors, La Biodola, Isola D'elba, Italy, 27 May - 2 Jun 2018, pp.554-555
8.
ICARUS T600: physics results and future activities / Zani, Andrea (INFN, Pavia ; CERN)
The ICARUS T600 detector has proven the effectiveness of Liquid Argon TPC technology with a successful three-year long run at the INFN Gran Sasso National Laboratories (LNGS).
The ICARUS T600 detector has proven the effectiveness of Liquid Argon TPC technology with a successful three-year long run at the INFN Gran Sasso National Laboratories (LNGS).ICARUS T600 LNGS data strongly contributed to the global effort in searching for neutrino oscillations mediated by sterile states. A definitive clarification of the sterile neutrino puzzle will come from the new multi-station, Short Baseline Neutrino (SBN) experiment at the Booster Neutrino Beam (BNB) at Fermilab, where a refurbished T600 will act as Far Detector.Presently the T600 detector is located at CERN, undergoing a major overhauling which will allow its participation in the 5 years program of the Fermilab upcoming SBN project. [...]

2016 - 8 p. - Published in : EPJ Web Conf. 126 (2016) 04056
In : 4th International Conference on New Frontiers in Physics, Kolymbari, Greece, 23 - 30 Aug 2015, pp.04056
9.
Timing properties of Hamamatsu R5912-MOD photomultiplier tube for the ICARUS T600 light detection system / Babicz, Marta (CERN ; AGH-UST, Cracow) ; Bellini, Vincenzo (INFN, Catania ; Catania U.) ; Bonesini, Maurizio (INFN, Milan Bicocca) ; Cervi, Tommaso (INFN, Pavia ; Pavia U.) ; Falcone, Andrea (Texas U., Arlington) ; Menegolli, Alessandro (INFN, Pavia ; Pavia U.) ; Montanari, Claudio (INFN, Pavia) ; Raselli, Gian Luca (INFN, Pavia) ; Rossella, Massimo (INFN, Pavia) ; Spanu, Maura (INFN, Pavia ; Pavia U.) et al.
The ICARUS T600 liquid argon time projection chamber (LAr-TPC) will operate at shallow depth as far detector for the Short Baseline Neutrino (SBN) program at FNAL. A new scintillation light detection system, with a time resolution of the order of the nanosecond, is required to distinguish the actual beam related events from the huge cosmic background. [...]
2018 - 4 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 912 (2018) 231-234
In : New Developments in Photodetection 2017, Tours, France, 3 - 7 Jul 2017, pp.231-234
10.
The scintillation light detection system of ICARUS-T600: Hardware implementation and early results / ICARUS Collaboration
The ICARUS-T600 Liquid Argon (LAr) Time Projection Chamber (TPC) is taking data with the Fermilab Booster Neutrino Beam-line (BNB) in the Short Baseline Neutrino (SBN) program to search for a possible LSND-like sterile neutrino signal. A light detection system, based on 360 Hamamatsu R5912-MOD Photo-Multiplier Tubes (PMTs) deployed behind the TPC wire chambers, has been realized to detect vacuum ultraviolet (VUV) photons produced by ionizing particles in LAr. [...]
2023 - 5 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 1046 (2023) 167685

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