Accès ouvert déclaré
2022
preprint
White Paper on Light Sterile Neutrino Searches and Related Phenomenology
M. A. Acero, C. Argüelles, Matheus Hostert, D. Kalra, G. Karagiorgi, K.J. Kelly, B. Littlejohn, P. Machado, W. Pettus, M. Toups, M. Ross-Lonergan, A. Sousa, P. T. Surukuchi, Y.Y.Y. Wong, Waleed Abdallah, Asli M. Abdullahi, R. Akutsu, Luis Alvarez-Ruso, Daniele S. M. Alves, A. Aurisano, A.B. Balantekin, Jeffrey M. Berryman, Toni Bertólez-Martínez, J. Brunner, M. Blennow, S. Bolognesi, M. Borusinski, D. Cianci, G. Collin, J.M. Conrad, Brian C. Crow, P.B. Denton, Mark J. Duvall, E. Fernández-Martínez, C.S. Fong, N. Foppiani, David Forero, M. Friend, Adrián-David García-Soto, C. Giganti, C. Giunti, R. Gandhi, Monojit Ghosh, J. Hardin, K.M. Heeger, M. Ishitsuka, A. Izmaylov, B. J. P. Jones, J.R. Jordan, N.W. Kamp, T. Katori, S.B. Kim, L.W. Koerner, M. Lamoureux, T. Lasserre, K. G. Leach, J. Learned, Y.F. Li, J. M. Link, W.C. Louis, K. Mahn, P.D. Meyers, J. Maricic, D.M. Marko, T. Maruyama, S. Mertens, H. Minakata, I. Mocioiu, M. Mooney, M.H. Moulai, H. Nunokawa, J.P. Ochoa-Ricoux, Yoomin Oh, Tommy Ohlsson, Heinrich Päs, D. Pershey, R. G. H. Robertson, S. Rosauro-Alcaraz, C. Rott, Samiran Roy, Jordi Salvadó, M. Scott, Sungsook Seo, M.H. Shaevitz, M. Smiley, J. Spitz, Juliana Stachurska, T. Thakore, C.A. Ternes, A. Thompson, Shih-Pang Tseng, B. Vogelaar, Tomáš Weiss, R.A. Wendell, T. Wright, Zhao Xin, B. S. Yang, J. Yoo, J. Zennamo, J. Zettlemoyer, J.D. Zornoza, S. Ahmad, V. S. Basto-Gonzalez, N.S. Bowden, B.C. Cañas, D. Caratelli, C.V. Chang, C. Chen, T. Classen, M. Convery, G. S. Davies, Z. Djurcic, R. Dorrill, Y. Du, J.J. Evans, U. Fahrendholz, J.A. Formaggio, B.T. Foust, H. Frandini Gatti, D. Garcia-Gamez, Stefano Gariazzo, J. Gehrlein, C. Grant, R.A. Gomes, A.B. Hansell, F. Halzen, Serene Ho, Josh Zink, R. Jones, P. Kunkle, Jing Li, S. Li, X. Luo, Yury Malyshkin, Daniele Massaro, A. Mastbaum, R. Mohanta, H. P. Mumm, M. Nebot-Guinot, R. Neilson, K. Ni, J. Nieves, G. D. Orebi Gann, V. Pandey, S. Pascoli, X. Qian, M. Rajaoalisoa, C. Roca, B. Roskovec, Eduardo Saul-Sala, L. Saldaña, K. Scholberg, Bibhushan Shakya, P.L. Slocum, E.L. Snider, Hans Steiger, A.F. Steklain, Matthias Raphael Stock, F. Sutanto, Volodymyr Takhistov, Y.-D. Tsai, Y.-T. Tsai, D. Venegas-Vargas, M. Wallbank, En Wang, P. Weatherly, S. Westerdale, E. Worcester, W. Wu, Ge Yang, B. Zamorano
17Citations signalées, ce qui n’est pas une note de qualité
4Institutions déclarées
1Pays d’affiliation déclarés
Rattachement africain : fr.
Niveau de preuve : code pays fourni par la source.
Le résumé fourni par la source
This white paper provides a comprehensive review of our present understanding of experimental neutrino anomalies that remain unresolved, charting the progress achieved over the last decade at the experimental and phenomenological level, and sets the stage for future programmatic prospects in addressing those anomalies. It is purposed to serve as a guiding and motivational "encyclopedic" reference, with emphasis on needs and options for future exploration that may lead to the ultimate resolution of the anomalies. We see the main experimental, analysis, and theory-driven thrusts that will be essential to achieving this goal being: 1) Cover all anomaly sectors -- given the unresolved nature of all four canonical anomalies, it is imperative to support all pillars of a diverse experimental portfolio, source, reactor, decay-at-rest, decay-in-flight, and other methods/sources, to provide complementary probes of and increased precision for new physics explanations; 2) Pursue diverse signatures -- it is imperative that experiments make design and analysis choices that maximize sensitivity to as broad an array of these potential new physics signatures as possible; 3) Deepen theoretical engagement -- priority in the theory community should be placed on development of standard and beyond standard models relevant to all four short-baseline anomalies and the development of tools for efficient tests of these models with existing and future experimental datasets; 4) Openly share data -- Fluid communication between the experimental and theory communities will be required, which implies that both experimental data releases and theoretical calculations should be publicly available; and 5) Apply robust analysis techniques -- Appropriate statistical treatment is crucial to assess the compatibility of data sets within the context of any given model.
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.
Le contrôle bibliographique ouvert
La source scientifique ouverte est momentanément indisponible.
Les institutions déclarées
Une affiliation ne permet pas de déduire la nationalité d’un auteur.
Les sujets associés
Neutrino Physics ResearchAstrophysics and Cosmic Phenomena