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nuSTORM at CERN: Feasibility Study
The Neutrinos from Stored Muons, nuSTORM, facility has been designed to deliver a definitive neutrino-nucleus scattering programme using beams of $\bar{\nu}_e$ and $\bar{\nu}_\mu$ from the decay of muons confined within a storage ring. The facility is unique, it will be capable of storing $\mu^\pm$...
Autores principales: | , , , , , , , , , , , , , , , , , , |
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Lenguaje: | eng |
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30-1
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Acceso en línea: | https://dx.doi.org/10.17181/CERN.FQTB.O8QN http://cds.cern.ch/record/2654649 |
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author | Ahdida, C.C. Appleby, R. Bartmann, W. Bauche, J. Calviani, M. Gall, J. Gilardoni, S. Goddard, B. Hessler, C. Huber, P. Efthymiopoulos, I. Lagrange, J.B. Lamont, M. Long, K. Osborne, J.A. Pasternak, J. Soler, F.J.P. Tygier, S. Velotti, F.M. |
author_facet | Ahdida, C.C. Appleby, R. Bartmann, W. Bauche, J. Calviani, M. Gall, J. Gilardoni, S. Goddard, B. Hessler, C. Huber, P. Efthymiopoulos, I. Lagrange, J.B. Lamont, M. Long, K. Osborne, J.A. Pasternak, J. Soler, F.J.P. Tygier, S. Velotti, F.M. |
author_sort | Ahdida, C.C. |
collection | CERN |
description | The Neutrinos from Stored Muons, nuSTORM, facility has been designed to deliver a definitive neutrino-nucleus scattering programme using beams of $\bar{\nu}_e$ and $\bar{\nu}_\mu$ from the decay of muons confined within a storage ring. The facility is unique, it will be capable of storing $\mu^\pm$ beams with a central momentum of between 1 GeV/c and 6 GeV/c and a momentum spread of 16%. This specification will allow neutrino-scattering measurements to be made over the kinematic range of interest to the DUNE and Hyper-K collaborations. At nuSTORM, the flavour composition of the beam and the neutrino-energy spectrum are both precisely known. The storage-ring instrumentation will allow the neutrino flux to be determined to a precision of 1% or better. By exploiting sophisticated neutrino-detector techniques such as those being developed for the near detectors of DUNE and Hyper-K, the nuSTORM facility will: Serve the future long- and short-baseline neutrino-oscillation programmes by providing definitive measurements of $\bar{\nu}_e A$ and $\bar{\nu}_{\mu} A$ scattering cross-sections with percent-level precision; Provide a probe that is 100% polarised and sensitive to isospin to allow incisive studies of nuclear dynamics and collective effects in nuclei; Deliver the capability to extend the search for light sterile neutrinos beyond the sensitivities that will be provided by the FNAL Short Baseline Neutrino (SBN) programme; and Create an essential test facility for the development of muon accelerators to serve as the basis of a multi-TeV lepton-antilepton collider. To maximise its impact, nuSTORM should be implemented such that data-taking begins by $\approx 2027/28$ when the DUNE and Hyper-K collaborations will each be accumulating data sets capable of determining oscillation probabilities with percent-level precision. With its existing proton-beam infrastructure, CERN is uniquely well-placed to implement nuSTORM. The feasibility of implementing nuSTORM at CERN has been studied by a CERN Physics Beyond Colliders study group. The muon storage ring has been optimised for the neutrino-scattering programme to store muon beams with momenta in the range 1 GeV to 6 GeV. The implementation of nuSTORM exploits an existing fast-extraction from the SPS that delivers beam to the LHC and to HiRadMat. A summary of the proposed implementation of nuSTORM at CERN is presented along with an indicative cost estimate and a preliminary discussion of a possible time-line for the implementation. |
id | cern-2654649 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 30-1 |
record_format | invenio |
spelling | cern-26546492021-07-30T14:57:44Zdoi:10.17181/CERN.FQTB.O8QNhttp://cds.cern.ch/record/2654649engAhdida, C.C.Appleby, R.Bartmann, W.Bauche, J.Calviani, M.Gall, J.Gilardoni, S.Goddard, B.Hessler, C.Huber, P.Efthymiopoulos, I.Lagrange, J.B.Lamont, M.Long, K.Osborne, J.A.Pasternak, J.Soler, F.J.P.Tygier, S.Velotti, F.M.nuSTORM at CERN: Feasibility StudyAccelerators and Storage RingsThe Neutrinos from Stored Muons, nuSTORM, facility has been designed to deliver a definitive neutrino-nucleus scattering programme using beams of $\bar{\nu}_e$ and $\bar{\nu}_\mu$ from the decay of muons confined within a storage ring. The facility is unique, it will be capable of storing $\mu^\pm$ beams with a central momentum of between 1 GeV/c and 6 GeV/c and a momentum spread of 16%. This specification will allow neutrino-scattering measurements to be made over the kinematic range of interest to the DUNE and Hyper-K collaborations. At nuSTORM, the flavour composition of the beam and the neutrino-energy spectrum are both precisely known. The storage-ring instrumentation will allow the neutrino flux to be determined to a precision of 1% or better. By exploiting sophisticated neutrino-detector techniques such as those being developed for the near detectors of DUNE and Hyper-K, the nuSTORM facility will: Serve the future long- and short-baseline neutrino-oscillation programmes by providing definitive measurements of $\bar{\nu}_e A$ and $\bar{\nu}_{\mu} A$ scattering cross-sections with percent-level precision; Provide a probe that is 100% polarised and sensitive to isospin to allow incisive studies of nuclear dynamics and collective effects in nuclei; Deliver the capability to extend the search for light sterile neutrinos beyond the sensitivities that will be provided by the FNAL Short Baseline Neutrino (SBN) programme; and Create an essential test facility for the development of muon accelerators to serve as the basis of a multi-TeV lepton-antilepton collider. To maximise its impact, nuSTORM should be implemented such that data-taking begins by $\approx 2027/28$ when the DUNE and Hyper-K collaborations will each be accumulating data sets capable of determining oscillation probabilities with percent-level precision. With its existing proton-beam infrastructure, CERN is uniquely well-placed to implement nuSTORM. The feasibility of implementing nuSTORM at CERN has been studied by a CERN Physics Beyond Colliders study group. The muon storage ring has been optimised for the neutrino-scattering programme to store muon beams with momenta in the range 1 GeV to 6 GeV. The implementation of nuSTORM exploits an existing fast-extraction from the SPS that delivers beam to the LHC and to HiRadMat. A summary of the proposed implementation of nuSTORM at CERN is presented along with an indicative cost estimate and a preliminary discussion of a possible time-line for the implementation.CERN-PBC-REPORT-2019-003oai:cds.cern.ch:265464930-10-2020 |
spellingShingle | Accelerators and Storage Rings Ahdida, C.C. Appleby, R. Bartmann, W. Bauche, J. Calviani, M. Gall, J. Gilardoni, S. Goddard, B. Hessler, C. Huber, P. Efthymiopoulos, I. Lagrange, J.B. Lamont, M. Long, K. Osborne, J.A. Pasternak, J. Soler, F.J.P. Tygier, S. Velotti, F.M. nuSTORM at CERN: Feasibility Study |
title | nuSTORM at CERN: Feasibility Study |
title_full | nuSTORM at CERN: Feasibility Study |
title_fullStr | nuSTORM at CERN: Feasibility Study |
title_full_unstemmed | nuSTORM at CERN: Feasibility Study |
title_short | nuSTORM at CERN: Feasibility Study |
title_sort | nustorm at cern: feasibility study |
topic | Accelerators and Storage Rings |
url | https://dx.doi.org/10.17181/CERN.FQTB.O8QN http://cds.cern.ch/record/2654649 |
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