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Comprehensive analysis of anomalous ANITA events disfavors a diffuse tau-neutrino flux origin

Title: Comprehensive analysis of anomalous ANITA events disfavors a diffuse tau-neutrino flux origin
Authors: Romero-Wolf, A; Wissel, SA; Schoorlemmer, H; Carvalho Jr, WR; Alvarez-Muniz, J; Zas, E; Allison, P; Banerjee, O; Batten, L; Beatty, JJ; Bechtol, K; Belov, K; Besson, DZ; Binns, WR; Bugaev, V; Cao, P; Chen, CC; Chen, CH; Chen, P; Clem, JM; Connolly, A; Cremonesi, L; Dailey, B; Deaconu, C; Dowkontt, PF; Fox, BD; Gordon, JWH; Gorham, PW; Hast, C; Hill, B; Hsu, SY; Huang, JJ; Hughes, K; Hupe, R; Israel, MH; Liewer, KM; Liu, TC; Ludwig, AB; Macchiarulo, L; Matsuno, S; Miki, C; Mulrey, K; Nam, J; Naudet, CC; Nichol, RJ; Novikov, A; Oberla, E; Prohira, S; Rauch, BF; Roberts, JM; Rotter, B; Russell, JW; Saltzberg, D; Seckel, D; Shiao, J; Stafford, S; Stockham, J; Stockham, M; Strutt, B; Sutherland, MS; Varner, GS; Vieregg, AG; Wang, SH
Source: Physical Review D , 99 , Article 063011. (2019)
Publisher Information: AMER PHYSICAL SOC
Publication Year: 2019
Collection: University College London: UCL Discovery
Subject Terms: Science & Technology; Physical Sciences; Astronomy & Astrophysics; Physics; Particles & Fields; ATMOSPHERIC SHOWERS; RADIO PULSES; ENERGY; SIMULATIONS
Description: Recently, the ANITA collaboration reported on two upward-going extensive air shower events consistent with a primary particle that emerges from the surface of the Antarctic ice sheet. These events may be of ν τ origin, in which the neutrino interacts within the Earth to produce a τ lepton that emerges from the Earth, decays in the atmosphere, and initiates an extensive air shower. In this paper we estimate an upper bound on the ANITA acceptance to a diffuse ν τ flux detected via τ -lepton-induced air showers within the bounds of standard model uncertainties. By comparing this estimate with the acceptance of Pierre Auger Observatory and IceCube and assuming standard model interactions, we conclude that a ν τ origin of these events would imply a neutrino flux at least two orders of magnitude above current bounds.
Document Type: article in journal/newspaper
File Description: text
Language: English
Relation: https://discovery.ucl.ac.uk/id/eprint/10072337/1/PhysRevD.99.063011.pdf; https://discovery.ucl.ac.uk/id/eprint/10072337/
Availability: https://discovery.ucl.ac.uk/id/eprint/10072337/1/PhysRevD.99.063011.pdf; https://discovery.ucl.ac.uk/id/eprint/10072337/
Rights: open
Accession Number: edsbas.F1FBDB09
Database: BASE