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High-Energy and Ultra-High-Energy Neutrinos: A Snowmass White Paper

Authors :
Markus Ackermann
Mauricio Bustamante
Lu Lu
Nepomuk Otte
Mary Hall Reno
Stephanie Wissel
Sanjib K. Agarwalla
Jaime Alvarez-Muñiz
Rafael Alves Batista
Carlos A. Argüelles
Brian A. Clark
Austin Cummings
Sudipta Das
Valentin Decoene
Peter B. Denton
Damien Dornic
Zhan-Arys Dzhilkibaev
Yasaman Farzan
Alfonso Garcia
Maria Vittoria Garzelli
Christian Glaser
Aart Heijboer
Jörg R. Hörandel
Giulia Illuminati
Yu Seon Jeong
John L. Kelley
Kevin J. Kelly
Ali Kheirandish
Spencer R. Klein
John F. Krizmanic
Michael J. Larson
Kohta Murase
Ashish Narang
Remy L. Prechelt
Steven Prohira
Elisa Resconi
Marcos Santander
Victor B. Valera
Justin Vandenbroucke
Olga Vasil'evna Suvorova
Lawrence Wiencke
Shigeru Yoshida
Tianlu Yuan
Enrique Zas
Pavel Zhelnin
Bei Zhou
Luis A. Anchordoqui
Yosuke Ashida
Mahdi Bagheri
Aswathi Balagopal
Vedant Basu
James Beatty
Keith Bechtol
Nicole Bell
Abigail Bishop
Julia Book
Anthony Brown
Alexander Burgman
Michael Campana
Nhan Chau
Thomas Y. Chen
Alan Coleman
Amy Connolly
Janet M. Conrad
Pablo Correa
Cyril Creque-Sarbinowski
Zachary Curtis-Ginsberg
Paramita Dasgupta
Simon De Kockere
Krijn de Vries
Cosmin Deaconu
Abhishek Desai
Tyce DeYoung
Armando di Matteo
Dominik Elsaesser
Phillip Fürst
Kwok Lung Fan
Anatoli Fedynitch
Derek Fox
Erik Ganster
Martin Ha Minh
Christian Haack
Steffen Hallman
Francis Halzen
Andreas Haungs
Aya Ishihara
Eleanor Judd
Timo Karg
Albrecht Karle
Teppei Katori
Alina Kochocki
Claudio Kopper
Marek Kowalski
Ilya Kravchenko
Naoko Kurahashi
Mathieu Lamoureux
Hermes León Vargas
Massimiliano Lincetto
Qinrui Liu
Jim Madsen
Yuya Makino
Joseph Mammo
Zsuzsa Marka
Eric Mayotte
Kevin Meagher
Maximilian Meier
Lino Miramonti
Marjon Moulai
Katharine Mulrey
Marco Muzio
Richard Naab
Anna Nelles
William Nichols
Alisa Nozdrina
Erin O'Sullivan
Vivian OD́ell
Jesse Osborne
Vishvas Pandey
Ek Narayan Paudel
Alex Pizzuto
Mattias Plum
Carlos Pobes Aranda
Lilly Pyras
Christoph Raab
Zoe Rechav
Juan Rojo
Oscar Romero Matamala
Pierpaolo Savina
Frank Schroeder
Lisa Schumacher
Sergio Sciutto
Stephen Sclafani
Mohammad Ful Hossain Seikh
Manuel Silva
Rajeev Singh
Daniel Smith
Samuel Timothy Spencer
Robert Wayne Springer
Juliana Stachurska
Olga Suvorova
Ignacio Taboada
Simona Toscano
Matias Tueros
Jean Pierre Twagirayezu
Nick van Eijndhoven
Péter Veres
Abigail Vieregg
Winnie Wang
Nathan Whitehorn
Walter Winter
Emre Yildizci
Shiqi Yu
Centre de Physique des Particules de Marseille (CPPM)
Aix Marseille Université (AMU)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS)
Faculty of Sciences and Bioengineering Sciences
Elementary Particle Physics
Physics
Source :
Journal of High Energy Astrophysics, 36, 55-110, JHEAp, JHEAp, 2022, 36, pp.55-110. ⟨10.1016/j.jheap.2022.08.001⟩, Journal of High Energy Astrophysics, 36, pp. 55-110
Publication Year :
2022

Abstract

Astrophysical neutrinos are excellent probes of astroparticle physics and high-energy physics. With energies far beyond solar, supernovae, atmospheric, and accelerator neutrinos, high-energy and ultra-high-energy neutrinos probe fundamental physics from the TeV scale to the EeV scale and beyond. They are sensitive to physics both within and beyond the Standard Model through their production mechanisms and in their propagation over cosmological distances. They carry unique information about their extreme non-thermal sources by giving insight into regions that are opaque to electromagnetic radiation. This white paper describes the opportunities astrophysical neutrino observations offer for astrophysics and high-energy physics, today and in coming years. Astrophysical neutrinos are excellent probes of astroparticle physics and high-energy physics. With energies far beyond solar, supernovae, atmospheric, and accelerator neutrinos, high-energy and ultra-high-energy neutrinos probe fundamental physics from the TeV scale to the EeV scale and beyond. They are sensitive to physics both within and beyond the Standard Model through their production mechanisms and in their propagation over cosmological distances. They carry unique information about their extreme non-thermal sources by giving insight into regions that are opaque to electromagnetic radiation. This white paper describes the opportunities astrophysical neutrino observations offer for astrophysics and high-energy physics, today and in coming years.

Details

Language :
English
ISSN :
22144048
Database :
OpenAIRE
Journal :
Journal of High Energy Astrophysics, 36, 55-110, JHEAp, JHEAp, 2022, 36, pp.55-110. ⟨10.1016/j.jheap.2022.08.001⟩, Journal of High Energy Astrophysics, 36, pp. 55-110
Accession number :
edsair.doi.dedup.....be05422cbbe676a76cc5f9b01512e195
Full Text :
https://doi.org/10.1016/j.jheap.2022.08.001⟩