CERN Accelerating science

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1.
Exploring atmospheric neutrino oscillations at ESSnuSB / ESSnuSB Collaboration
This study provides an analysis of atmospheric neutrino oscillations at the ESSnuSB far detector facility. The prospects of the two cylindrical Water Cherenkov detectors with a total fiducial mass of 540 kt are investigated over 10 years of data taking in the standard three-flavor oscillation scenario. [...]
arXiv:2407.21663.- 2024-10-25 - 14 p. - Published in : JHEP 2410 (2024) 187 Fulltext: 2407.21663 - PDF; document - PDF;
2.
Search for Leptonic CP Violation with the ESSnuSBplus Project / ESSnuSB Collaboration
ESSνSB is a design study for a next-generation long-baseline neutrino experiment that aims at the precise measurement of the CP-violating phase, δCP, in the leptonic sector at the second oscillation maximum. The conceptual design report published from the first phase of the project showed that after 10 years of data taking, more than 70% of the possible δCP range will be covered with 5σ C.L. [...]
2024 - 5 p. - Published in : LHEP 2024 (2024) 517 Fulltext: PDF;
3.
Decoherence in Neutrino Oscillation at the ESSnuSB Experiment / ESSnuSB Collaboration
Neutrino oscillation experiments provide a unique window in exploring several new physics scenarios beyond the standard three flavour. One such scenario is quantum decoherence in neutrino oscillation which tends to destroy the interference pattern of neutrinos reaching the far detector from the source. [...]
arXiv:2404.17559.- 2024-08-08 - 30 p. - Published in : JHEP 2408 (2024) 063 Fulltext: 2404.17559 - PDF; document - PDF;
4.
Study of nonstandard interactions mediated by a scalar field at the ESSnuSB experiment / ESSnuSB Collaboration
In this paper we study non-standard interactions mediated by a scalar field (SNSI) in the context of ESSnuSB experiment. In particular we study the capability of ESSnuSB to put bounds on the SNSI parameters and also study the impact of SNSI in the measurement of the leptonic CP phase $\delta_{\rm CP}$. [...]
arXiv:2310.10749.- 2024-06-01 - 12 p. - Published in : Phys. Rev. D 109 (2024) 115010 Fulltext: 2310.10749 - PDF; Publication - PDF;
5.
Modeling Needs for High Power Target / Barbier, Charlotte (Oak Ridge) ; Bidhar, Sujit (Fermilab) ; Calviani, Marco (CERN) ; Dooling, Jeff (Argonne) ; Gao, Jian (Michigan State U.) ; Jacques, Aaron (Oak Ridge) ; Lu, Wei (Oak Ridge) ; Voti, Roberto Li (INFN, Rome) ; Pellemoine, Frederique (Fermilab) ; Mach, Justin (Oak Ridge) et al.
The next generation of high power targets will use more complex geometries, novel materials, and new concepts (like flowing granular materials); however, the current numerical approaches will not be sufficient to converge towards a reliable target design that satisfies the physical requirements. [...]
FERMILAB-CONF-22-168-AD ; arXiv:2203.04714.
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1 Sordo, F
1 Sordo, Fernando
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