CERN Accelerating science

CERN Document Server 7 записей найдено  Поиск длился 0.64 секунд. 
1.
Addendum to the Letter of Intent CERN-SPSC-2023-021 ; SPSC-I-260 / Hyper-Kamiokande Collaboration
In August 2023 the Letter of Intent titled ``The Hyper-K Underwater Electronics Assembly project'' (CERN-SPSC-2023-021, SPSC-I-260) was submitted. [...]
CERN-SPSC-2024-004 ; SPSC-M-796.
- 2024.
Fulltext - Original Document (SPSC-I-260)
2.
The Hyper-K Underwater Electronics Assembly project / Hyper-Kamiokande Collaboration
Starting in 2027, the Hyper-Kamiokande experiment in Japan will search for leptonic CP violation in long-baseline accelerator neutrino oscillations with a realistic potential of discovery within 3 to 10 years from the start of the data taking depending on the value of the CP violating phase, to be measured with a resolution better than $23^{\circ}$. [...]
CERN-SPSC-2023-021 ; SPSC-I-260.
- 2023.
Fulltext
3.
Trends in particle and nuclei identification techniques in nuclear physics experiments / Badalà, A (INFN, Catania) ; La Cognata, M (INFN, LNS) ; Nania, R (INFN, Bologna) ; Osipenko, M (INFN, Genoa) ; Piantelli, S (INFN, Florence) ; Turrisi, R (INFN, Padua) ; Barion, L (INFN, Ferrara) ; Capra, S (Milan U. ; INFN, Milan) ; Carbone, D (INFN, Catania) ; Carnesecchi, F (INFN, Bologna ; CERN) et al.
Particle identification techniques are fundamental tools in nuclear physics experiments. Discriminating particles or nuclei produced in nuclear interactions allows to better understand the underlying physics mechanisms. [...]
2022 - 88 p. - Published in : Nuovo Cimento, Riv.: 45 (2022) , no. 3, pp. 189-277
- Published in : Nuovo Cimento, Riv.: 45 (2022) , no. 3, pp. 277-279 Fulltext: PDF;
4.
NEDA—NEutron Detector Array / Valiente-Dobón, J J (INFN, Legnaro) ; Jaworski, G (INFN, Legnaro) ; Goasduff, A (INFN, Legnaro ; Padua U. ; INFN, Padua) ; Egea, F J (INFN, Legnaro ; Padua U. ; INFN, Padua ; Valencia U., IFIC) ; Modamio, V (INFN, Legnaro ; Oslo U.) ; Hüyük, T (Valencia U., IFIC) ; Triossi, A (Padua U. ; INFN, Padua ; CERN) ; Jastrząb, M (Cracow, INP) ; Söderström, P A (ELI-NP, Bucharest) ; Di Nitto, A (Darmstadt, GSI ; Helmholtz Inst., Mainz) et al.
The NEutron Detector Array, NEDA, will form the next generation neutron detection system that has been designed to be operated in conjunction with γ -ray arrays, such as the tracking-array AGATA, to aid nuclear spectroscopy studies. NEDA has been designed to be a versatile device, with high-detection efficiency, excellent neutron- γ discrimination, and high rate capabilities. [...]
2019 - 6 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 927 (2019) 81-86
5.
The New Neutron Multiplicity Filter NEDA and Its First Physics Campaign with AGATA / Jaworski, G (INFN, Legnaro ; Warsaw U., Heavy Ion Lab) ; Goasduff, A (INFN, Legnaro ; Padua U. ; INFN, Padua) ; Egea Canet, F J (INFN, Legnaro ; Padua U. ; INFN, Padua ; Valencia U., IFIC) ; Modamio, V (INFN, Legnaro ; Oslo U.) ; Hüyük, T (Valencia U., IFIC) ; Triossi, A (Padua U. ; INFN, Padua ; CERN) ; Jastrząb, M (Cracow, INP) ; Söderström, P A (ELI-NP, Bucharest) ; Carturan, S M (Padua U. ; INFN, Padua) ; Di Nitto, A (Helmholtz Inst., Mainz ; Darmstadt, GSI) et al.
A new neutron multiplicity filter NEDA, after a decade of design, R&D; and construction, was employed in its first physics campaign with the AGATA spectrometer. Properties and performance of the array are discussed..
Acta Physica Polonica B Editorial Office, 2019 - 6 p. - Published in : Acta Phys. Pol. B 50 (2019) 585
In : Zakopane Conference on Nuclear Physics : Extremes of the Nuclear Landscape, Zakopane, Poland, 26 Aug - 2 Sep 2018, pp.585
6.
High intensity neutrino oscillation facilities in Europe / Edgecock, T.R. (Rutherford) ; Caretta, O. (Rutherford) ; Davenne, T. (Rutherford) ; Densham, C. (Rutherford) ; Fitton, M. (Rutherford) ; Kelliher, D. (Rutherford) ; Loveridge, P. (Rutherford) ; Machida, S. (Rutherford) ; Prior, C. (Rutherford) ; Rogers, C. (Rutherford) et al.
The EUROnu project has studied three possible options for future, high intensity neutrino oscillation facilities in Europe. The first is a Super Beam, in which the neutrinos come from the decay of pions created by bombarding targets with a 4 MW proton beam from the CERN High Power Superconducting Proton Linac. [...]
arXiv:1305.4067; FERMILAB-PUB-13-656-APC-PPD.- 2013-02-20 - 18 p.
- Published in : Phys. Rev. Accel. Beams: 19 (2016) , pp. 079901 APS Published version, local copy: PDF; Addendum: PDF; Fulltext: fermilab-pub-13-656-apc-ppd - PDF; PhysRevSTAB.16 - PDF; Preprint: PDF; External links: Fermilab Library Server (fulltext available); Open Access fulltext
7.
Beta Beams for Precision Measurements of Neutrino Oscillation Parameters / Wildner, E (CERN) ; Benedetto, E (CERN) ; Hansen, C (CERN) ; De Melo Mendonca, T (CERN) ; Stora, T (CERN) ; Damjanovic, S (CERN) ; Payet, J (Saclay) ; Chancé, A (Saclay) ; Zorin, V (Nizhnii Novgorod, IAP) ; Izotov, I (Nizhnii Novgorod, IAP) et al.
Neutrino oscillations have implications for the Standard Model of particle physics. The CERN Beta Beam has outstanding capabilities to contribute to precision measurements of the parameters governing neutrino oscillations [...]
CERN-ATS-2012-145.- Geneva : CERN, 2012 - 3 p. - Published in : Conf. Proc.: C1205201 (2012) , pp. THPPP087
Fulltext: PDF; External link: Published version from JaCoW
In : 3rd International Particle Accelerator Conference, New Orleans, LA, USA, 20 - 25 May 2012, pp.3939

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