Tau neutrinos in the next decade: from GeV to EeV

Author:

Abraham Roshan Mammen,Alvarez-Muñiz Jaime,Argüelles Carlos A,Ariga Akitaka,Ariga Tomoko,Aurisano Adam,Autiero Dario,Bishai Mary,Bostan Nilay,Bustamante Mauricio,Cummings Austin,Decoene Valentin,de Gouvêa André,De Lellis Giovanni,De Roeck AlbertORCID,Denton Peter BORCID,Di Crescenzo Antonia,Diwan Milind V,Farzan Yasaman,Fedynitch Anatoli,Feng Jonathan L,Fields Laura J,Garcia Alfonso,Garzelli Maria Vittoria,Gehrlein JuliaORCID,Glaser Christian,Grzelak Katarzyna,Hallmann Steffen,Hewes Jeremy,Indumathi D,Ismail Ahmed,Jana Sudip,Jeong Yu Seon,Kelly Kevin J,Klein Spencer R,Kling Felix,Kosc Thomas,Kose Umut,Koskinen D Jason,Krizmanic John,Lazar Jeff,Li Yichen,Martinez-Soler Ivan,Mocioiu Irina,Nam Jiwoo,Niess Valentin,Otte Nepomuk,Patel Sameer,Petti Roberto,Prechelt Remy L,Prohira Steven,Rajaoalisoa Miriama,Reno Mary Hall,Safa Ibrahim,Sarasty-Segura Carlos,Senthil R Thiru,Stachurska Juliana,Tomalak Oleksandr,Trojanowski Sebastian,Wendell Roger Alexandre,Williams Dawn,Wissel StephanieORCID,Yaeggy Barbara,Zas Enrique,Zhelnin Pavel,Zhu Jing-yu

Abstract

Abstract Tau neutrinos are the least studied particle in the standard model. This whitepaper discusses the current and expected upcoming status of tau neutrino physics with attention to the broad experimental and theoretical landscape spanning long-baseline, beam-dump, collider, and astrophysical experiments. This whitepaper was prepared as a part of the NuTau2021 Workshop.

Publisher

IOP Publishing

Subject

Nuclear and High Energy Physics

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