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Clone flow analysis for a theory inspired Neutrino Experiment planning

The presence of several clone solutions in the simultaneous measurement of ($\theta_{13},\delta$) has been widely discussed in literature. In this letter we write the analytical formulae of the clones location in the ($\theta_{13},\delta$) plane as a function of the physical input pair ($\bar\theta_...

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Detalles Bibliográficos
Autores principales: Donini, A, Meloni, D, Rigolin, S
Lenguaje:eng
Publicado: 2003
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1126-6708/2004/06/011
http://cds.cern.ch/record/689870
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author Donini, A
Meloni, D
Rigolin, S
author_facet Donini, A
Meloni, D
Rigolin, S
author_sort Donini, A
collection CERN
description The presence of several clone solutions in the simultaneous measurement of ($\theta_{13},\delta$) has been widely discussed in literature. In this letter we write the analytical formulae of the clones location in the ($\theta_{13},\delta$) plane as a function of the physical input pair ($\bar\theta_{13},\bar\delta$). We show how the clones move with changing $\bar\theta_{13}$. The "clone flow" can be significantly different if computed (naively) from the oscillation probabilities or (exactly) from the probabilities integrated over the neutrino flux and cross-section. Using our complete computation we compare the clone flow of a set of possible future neutrino experiments: the CERN SuperBeam, BetaBeam and Neutrino Factory proposals. We show that the combination of these specific BetaBeam and SuperBeam does not help in solving the degeneracies. On the contrary, the combination of one of them with the Neutrino Factory Golden and Silver channel can be used, from a theoretical point of view, to solve completely the eightfold degeneracy.
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spelling cern-6898702019-09-30T06:29:59Zdoi:10.1088/1126-6708/2004/06/011http://cds.cern.ch/record/689870engDonini, AMeloni, DRigolin, SClone flow analysis for a theory inspired Neutrino Experiment planningParticle Physics - PhenomenologyThe presence of several clone solutions in the simultaneous measurement of ($\theta_{13},\delta$) has been widely discussed in literature. In this letter we write the analytical formulae of the clones location in the ($\theta_{13},\delta$) plane as a function of the physical input pair ($\bar\theta_{13},\bar\delta$). We show how the clones move with changing $\bar\theta_{13}$. The "clone flow" can be significantly different if computed (naively) from the oscillation probabilities or (exactly) from the probabilities integrated over the neutrino flux and cross-section. Using our complete computation we compare the clone flow of a set of possible future neutrino experiments: the CERN SuperBeam, BetaBeam and Neutrino Factory proposals. We show that the combination of these specific BetaBeam and SuperBeam does not help in solving the degeneracies. On the contrary, the combination of one of them with the Neutrino Factory Golden and Silver channel can be used, from a theoretical point of view, to solve completely the eightfold degeneracy.hep-ph/0312072CERN-TH-2003-297IFT-UAM-CSIC-2003-51UG-FT-160CAFPE-2003-30oai:cds.cern.ch:6898702003-12-04
spellingShingle Particle Physics - Phenomenology
Donini, A
Meloni, D
Rigolin, S
Clone flow analysis for a theory inspired Neutrino Experiment planning
title Clone flow analysis for a theory inspired Neutrino Experiment planning
title_full Clone flow analysis for a theory inspired Neutrino Experiment planning
title_fullStr Clone flow analysis for a theory inspired Neutrino Experiment planning
title_full_unstemmed Clone flow analysis for a theory inspired Neutrino Experiment planning
title_short Clone flow analysis for a theory inspired Neutrino Experiment planning
title_sort clone flow analysis for a theory inspired neutrino experiment planning
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1088/1126-6708/2004/06/011
http://cds.cern.ch/record/689870
work_keys_str_mv AT doninia cloneflowanalysisforatheoryinspiredneutrinoexperimentplanning
AT melonid cloneflowanalysisforatheoryinspiredneutrinoexperimentplanning
AT rigolins cloneflowanalysisforatheoryinspiredneutrinoexperimentplanning