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Título

Toroidal magnetized iron neutrino detector for a neutrino factory

AutorBross, A.; Wands, R.; Bayes, R.; Laing, Andrew CSIC; Soler, F. J. P.; Cervera Villanueva, Anselmo CSIC; Ghosh, T. CSIC; Gómez Cadenas, Juan José CSIC ORCID; Hernández Gamazo, Pilar CSIC ORCID; Martín-Albo, Justo CSIC ORCID ; Burguet Castell, Jordi
Palabras claveMonte-carlo generator
Physics
Fecha de publicación20-ago-2013
EditorAmerican Physical Society
CitaciónPhysical Review Special Topics: Accelerators and Beams 16 (8): 081002 - 16 (2013)
ResumenA neutrino factory has unparalleled physics reach for the discovery and measurement of CP violation in the neutrino sector. A far detector for a neutrino factory must have good charge identification with excellent background rejection and a large mass. An elegant solution is to construct a magnetized iron neutrino detector (MIND) along the lines of MINOS, where iron plates provide a toroidal magnetic field and scintillator planes provide 3D space points. In this paper, the current status of a simulation of a toroidal MIND for a neutrino factory is discussed in light of the recent measurements of large theta(13). The response and performance using the 10 GeV neutrino factory configuration are presented. It is shown that this setup has equivalent delta(CP) reach to a MIND with a dipole field and is sensitive to the discovery of CP violation over 85% of the values of delta(CP).
Versión del editorhttp://dx.doi.org/10.1103/PhysRevSTAB.16.081002
URIhttp://hdl.handle.net/10261/126766
DOI10.1103/PhysRevSTAB.16.081002
ISSN1098-4402
E-ISSN1098-4402
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