4.3 Article

Use of neutrino scattering events with low hadronic recoil to inform neutrino flux and detector energy scale

期刊

JOURNAL OF INSTRUMENTATION
卷 16, 期 8, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/1748-0221/16/08/P08068

关键词

Analysis and statistical methods; Neutrino detectors

资金

  1. Fermi Research Alliance, LLC (FRA) [DE-AC02-07CH11359]
  2. United States National Science Foundation [PHY-0619727]
  3. University of Rochester
  4. NSF (U.S.A.)
  5. DOE (U.S.A.)
  6. CAPES (Brazil)
  7. CNPq (Brazil)
  8. CoNaCyT (Mexico)
  9. Proyecto Basal [FB 0821]
  10. CONICYT PIA [ACT1413]
  11. Fondecyt (Chile) [3170845, 11130133]
  12. CONCYTEC (Consejo Nacional de Ciencia, Tecnologia e Innovacion Tecnologica) (Peru)
  13. DGI-PUCP (Direccion de Gestion de la Investigacion Pontificia Universidad Catolica del Peru)(Peru)
  14. VRI-UNI (Vice-Rectorate for Research of National University of Engineering) (Peru)
  15. NCN Opus (Poland) [2016/21/B/ST2/01092]
  16. Science and Technology Facilities Council (U.K.)

向作者/读者索取更多资源

This study demonstrates that low hadronic recoil events can be used to measure parameters of neutrino flux and detector models, and can help discriminate among parameters affecting the neutrino flux model. By fitting a large sample of low-v events obtained from MINERvA exposed to the NuMI medium-energy beam, it was found that the best-fit flux parameters were within their a priori uncertainties. Additionally, the energy scale of muons reconstructed in the MINOS detector was shifted by 3.6%, suggesting the potential application of this technique in other experiments such as DUNE operating at similar energies.
Charged-current neutrino interactions with low hadronic recoil (low-v) have a cross-section that is approximately constant versus neutrino energy. These interactions have been used to measure the shape of neutrino fluxes as a function of neutrino energy at accelerator-based neutrino experiments such as CCFR, NuTeV, MINOS and MINERvA. In this paper, we demonstrate that low-v events can be used to measure parameters of neutrino flux and detector models and that utilization of event distributions over the upstream detector face can discriminate among parameters that affect the neutrino flux model. From fitting a large sample of low-v events obtained by exposing MINERvA to the NuMI medium-energy beam, we find that the best-fit flux parameters are within their a priori uncertainties, but the energy scale of muons reconstructed in the MINOS detector is shifted by 3.6% (or 1.8 times the a priori uncertainty on that parameter). These fit results are now used in all MINERvA cross-section measurements, and this technique can be applied by other experiments operating at MINERvA energies, such as DUNE.

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