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New high-sensitivity searches for neutrons converting into antineutrons and/or sterile neutrons at the HIBEAM/NNBAR experiment at the European Spallation Source

  • A. Addazi
  • , K. Anderson
  • , S. Ansell
  • , K. S. Babu
  • , J. L. Barrow
  • , D. V. Baxter
  • , P. M. Bentley
  • , Z. Berezhiani
  • , R. Bevilacqua
  • , R. Biondi
  • , C. Bohm
  • , G. Brooijmans
  • , L. J. Broussard
  • , J. Cederc ll
  • , C. Crawford
  • , P. S.B. Dev
  • , D. D. Dijulio
  • , A. D. Dolgov
  • , K. Dunne
  • , P. Fierlinger
  • M. R. Fitzsimmons, A. Fomin, M. J. Frost, S. Gardiner, S. Gardner, A. Galindo-Uribarri, P. Geltenbort, S. Girmohanta, P. Golubev, E. Golubeva, G. L. Greene, T. Greenshaw, V. Gudkov, R. Hall-Wilton, L. Heilbronn, J. Herrero-Garcia, A. Holley, G. Ichikawa, T. M. Ito, E. Iverson, T. Johansson, L. Jönsson, Y. J. Jwa, Y. Kamyshkov, K. Kanaki, E. Kearns, Z. Kokai, B. Kerbikov, M. Kitaguchi, T. Kittelmann, E. Klinkby, A. Kobakhidze, L. W. Koerner, B. Kopeliovich, A. Kozela, V. Kudryavtsev, A. Kupsc, Y. T. Lee, M. Lindroos, J. Makkinje, J. I. Marquez, B. Meirose, T. M. Miller, D. Milstead, R. N. Mohapatra, T. Morishima, G. Muhrer, H. P. Mumm, K. Nagamoto, A. Nepomuceno, F. Nesti, V. V. Nesvizhevsky, T. Nilsson, A. Oskarsson, E. Paryev, R. W. Pattie, S. Penttil, H. Perrey, Y. N. Pokotilovski, I. Potashnikovav, K. Ramic, C. Redding, J. M. Richard, D. Ries, E. Rinaldi, N. Rizzi, N. Rossi, A. Ruggles, B. Rybolt, V. Santoro, U. Sarkar, A. Saunders, G. Senjanovic, A. P. Serebrov, H. M. Shimizu, R. Shrock, S. Silverstein, D. Silvermyr, W. M. Snow, A. Takibayev, I. Tkachev, L. Townsend, A. Tureanu, L. Varriano, A. Vainshtein, J. De Vries, R. Wagner, R. Woracek, Y. Yamagata, S. Yiu, A. R. Young, L. Zanini, Z. Zhang, O. Zimmer

Producción científica: Articlerevisión exhaustiva

66 Citas (Scopus)

Resumen

The violation of baryon number, is an essential ingredient for the preferential creation of matter over antimatter needed to account for the observed baryon asymmetry in the Universe. However, such a process has yet to be experimentally observed. The HIBEAM/NNBAR program is a proposed two-stage experiment at the European Spallation Source to search for baryon number violation. The program will include high-sensitivity searches for processes that violate baryon number by one or two units: free neutron-antineutron oscillation via mixing, neutron-antineutron oscillation via regeneration from a sterile neutron state , and neutron disappearance (n → n′); the effective process of neutron regeneration is also possible. The program can be used to discover and characterize mixing in the neutron, antineutron and sterile neutron sectors. The experiment addresses topical open questions such as the origins of baryogenesis and the nature of dark matter, and is sensitive to scales of new physics substantially in excess of those available at colliders. A goal of the program is to open a discovery window to neutron conversion probabilities (sensitivities) by up to three orders of magnitude compared with previous searches. The opportunity to make such a leap in sensitivity tests should not be squandered. The experiment pulls together a diverse international team of physicists from the particle (collider and low energy) and nuclear physics communities, while also including specialists in neutronics and magnetics.

Idioma originalEnglish
Número de artículo070501
PublicaciónJournal of Physics G: Nuclear and Particle Physics
Volumen48
N.º7
DOI
EstadoPublished - jul 2021

Nota bibliográfica

Publisher Copyright:
© 2021 The Author(s). Published by IOP Publishing Ltd.

Financiación

FinanciadoresNúmero del financiador
National Science Foundation Arctic Social Science Program1914133, 1746045, 1914631, 1914405
Horizon 2020 Framework Programme951782
Science and Technology Facilities CouncilST/S000747/1

    ASJC Scopus subject areas

    • Nuclear and High Energy Physics

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