Pith. sign in

REVIEW 8 cited by

Probing the origin of ultra-high-energy cosmic rays with neutrinos in the EeV energy range using the Pierre Auger Observatory

Not yet reviewed by Pith; the record is open.

This paper has not been read by Pith yet. Machine review is queued; the pith claim, tier, and objections will appear here once it completes.

SPECIMEN: schema-true, not a live event

T0 review · schema-true

One-sentence machine reading of the paper's core claim.

pith:XXXXXXXX · record.json · timestamp

arxiv 1906.07422 v2 pith:DKSESFTD submitted 2019-06-18 astro-ph.HE

Probing the origin of ultra-high-energy cosmic rays with neutrinos in the EeV energy range using the Pierre Auger Observatory

The Pierre Auger Collaboration: A. Aab , P. Abreu , M. Aglietta , I.F.M. Albuquerque , J.M. Albury , I. Allekotte , A. Almela , J. Alvarez Castillo
show 383 more authors
J. Alvarez-Mu\~niz G.A. Anastasi L. Anchordoqui B. Andrada S. Andringa C. Aramo H. Asorey P. Assis G. Avila A.M. Badescu A. Bakalova A. Balaceanu F. Barbato R.J. Barreira Luz S. Baur K.H. Becker J.A. Bellido C. Berat M.E. Bertaina X. Bertou P.L. Biermann J. Biteau A. Blanco J. Blazek C. Bleve M. Boh\'a\v{c}ov\'a D. Boncioli C. Bonifazi N. Borodai A.M. Botti J. Brack T. Bretz A. Bridgeman F.L. Briechle P. Buchholz A. Bueno S. Buitink M. Buscemi K.S. Caballero-Mora L. Caccianiga L. Calcagni A. Cancio F. Canfora I. Caracas J.M. Carceller R. Caruso A. Castellina F. Catalani G. Cataldi L. Cazon M. Cerda J.A. Chinellato K. Choi J. Chudoba L. Chytka R.W. Clay A.C. Cobos Cerutti R. Colalillo A. Coleman M.R. Coluccia R. Concei\c{c}\~ao A. Condorelli G. Consolati F. Contreras F. Convenga M.J. Cooper S. Coutu C.E. Covault B. Daniel S. Dasso K. Daumiller B.R. Dawson J.A. Day R.M. de Almeida S.J. de Jong G. De Mauro J.R.T. de Mello Neto I. De Mitri J. de Oliveira V. de Souza J. Debatin M. del R\'io O. Deligny N. Dhital A. Di Matteo M.L. D\'iaz Castro C. Dobrigkeit J.C. D'Olivo Q. Dorosti R.C. dos Anjos M.T. Dova A. Dundovic J. Ebr R. Engel M. Erdmann C.O. Escobar A. Etchegoyen H. Falcke J. Farmer G. Farrar A.C. Fauth N. Fazzini F. Feldbusch F. Fenu L.P. Ferreyro J.M. Figueira A. Filip\v{c}i\v{c} M.M. Freire T. Fujii A. Fuster B. Garc\'ia H. Gemmeke F. Gesualdi A. Gherghel-Lascu P.L. Ghia U. Giaccari M. Giammarchi M. Giller D. G{\l}as J. Glombitza F. Gobbi G. Golup M. G\'omez Berisso P.F. G\'omez Vitale J.P. Gongora N. Gonz\'alez I. Goos D. G\'ora A. Gorgi M. Gottowik T.D. Grubb F. Guarino G.P. Guedes E. Guido S. Hahn R. Halliday M.R. Hampel P. Hansen D. Harari T.A. Harrison V.M. Harvey A. Haungs T. Hebbeker D. Heck P. Heimann G.C. Hill C. Hojvat E.M. Holt P. Homola J.R. H\"orandel P. Horvath M. Hrabovsk\'y T. Huege J. Hulsman A. Insolia P.G. Isar J.A. Johnsen J. Jurysek A. K\"a\"ap\"a K.H. Kampert B. Keilhauer N. Kemmerich J. Kemp H.O. Klages M. Kleifges J. Kleinfeller D. Kuempel G. Kukec Mezek A. Kuotb Awad B.L. Lago D. LaHurd R.G. Lang R. Legumina M.A. Leigui de Oliveira V. Lenok A. Letessier-Selvon I. Lhenry-Yvon O.C. Lippmann D. Lo Presti L. Lopes R. L\'opez A. L\'opez Casado R. Lorek Q. Luce A. Lucero M. Malacari G. Mancarella D. Mandat B.C. Manning J. Manshanden P. Mantsch A.G. Mariazzi I.C. Mari\c{s} G. Marsella D. Martello H. Martinez O. Mart\'inez Bravo M. Mastrodicasa H.J. Mathes S. Mathys J. Matthews G. Matthiae E. Mayotte P.O. Mazur G. Medina-Tanco D. Melo A. Menshikov K.-D. Merenda S. Michal M.I. Micheletti L. Miramonti D. Mockler S. Mollerach F. Montanet C. Morello G. Morlino M. Mostaf\'a A.L. M\"uller M.A. Muller S. M\"uller R. Mussa W.M. Namasaka L. Nellen M. Niculescu-Oglinzanu M. Niechciol D. Nitz D. Nosek V. Novotny L. No\v{z}ka A Nucita L.A. N\'u\~nez A. Olinto M. Palatka J. Pallotta M.P. Panetta P. Papenbreer G. Parente A. Parra M. Pech F. Pedreira J. P\k{e}kala R. Pelayo J. Pe\~na-Rodriguez L.A.S. Pereira M. Perlin L. Perrone C. Peters S. Petrera J. Phuntsok T. Pierog M. Pimenta V. Pirronello M. Platino J. Poh B. Pont C. Porowski M. Pothast R.R. Prado P. Privitera M. Prouza A. Puyleart S. Querchfeld S. Quinn R. Ramos-Pollan J. Rautenberg D. Ravignani M. Reininghaus J. Ridky F. Riehn M. Risse P. Ristori V. Rizi W. Rodrigues de Carvalho J. Rodriguez Rojo M.J. Roncoroni M. Roth E. Roulet A.C. Rovero P. Ruehl S.J. Saffi A. Saftoiu F. Salamida H. Salazar G. Salina J.D. Sanabria Gomez F. S\'anchez E.M. Santos E. Santos F. Sarazin R. Sarmento C. Sarmiento-Cano R. Sato P. Savina M. Schauer V. Scherini H. Schieler M. Schimassek M. Schimp F. Schl\"uter D. Schmidt O. Scholten P. Schov\'anek F.G. Schr\"oder S. Schr\"oder J. Schumacher S.J. Sciutto M. Scornavacche R.C. Shellard G. Sigl G. Silli O. Sima R. \v{S}m\'ida G.R. Snow P. Sommers J.F. Soriano J. Souchard R. Squartini M. Stadelmaier D. Stanca S. Stani\v{c} J. Stasielak P. Stassi M. Stolpovskiy A. Streich M. Su\'arez-Dur\'an T. Sudholz T. Suomij\"arvi A.D. Supanitsky J. \v{S}up\'ik Z. Szadkowski A. Taboada O.A. Taborda A. Tapia C. Timmermans P. Tobiska C.J. Todero Peixoto B. Tom\'e G. Torralba Elipe A. Travaini P. Travnicek M. Trini M. Tueros R. Ulrich M. Unger M. Urban J.F. Vald\'es Galicia I. Vali\~no L. Valore P. van Bodegom A.M. van den Berg A. van Vliet E. Varela B. Vargas C\'ardenas A. V\'asquez-Ram\'irez D. Veberi\v{c} C. Ventura I.D. Vergara Quispe V. Verzi J. Vicha L. Villase\~nor J. Vink S. Vorobiov H. Wahlberg A.A. Watson M. Weber A. Weindl M. Wiede\'nski L. Wiencke H. Wilczy\'nski T. Winchen M. Wirtz D. Wittkowski B. Wundheiler L. Yang A. Yushkov E. Zas D. Zavrtanik M. Zavrtanik L. Zehrer A. Zepeda B. Zimmermann M. Ziolkowski F. Zuccarello
This is my paper
classification astro-ph.HE
keywords neutrinostimesultra-high-energyaugercosmicenergiesenergyflux
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
0 comments
read the original abstract

Neutrinos with energies above $10^{17}$ eV are detectable with the Surface Detector Array of the Pierre Auger Observatory. The identification is efficiently performed for neutrinos of all flavors interacting in the atmosphere at large zenith angles, as well as for Earth-skimming $\tau$ neutrinos with nearly tangential trajectories relative to the earth. No neutrino candidates were found in $\sim\,14.7$ years of data taken up to 31 August 2018. This leads to restrictive upper bounds on their flux. The $90\%$ C.L. single-flavor limit to the diffuse flux of ultra-high-energy neutrinos with an $E_\nu^{-2}$ spectrum in the energy range $1.0 \times 10^{17}~{\rm eV} - 2.5 \times 10^{19}~{\rm eV}$ is $E^2 {\rm d}N_\nu/{\rm d}E_\nu < 4.4 \times 10^{-9}~{\rm GeV~cm^{-2}~s^{-1}~sr^{-1}}$, placing strong constraints on several models of neutrino production at EeV energies and on the properties of the sources of ultra-high-energy cosmic rays.

discussion (0)

Sign in with ORCID, Apple, or X to comment. Anyone can read and Pith papers without signing in.

Forward citations

Cited by 8 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. The KM3NeT 220 PeV event: a neutrino messenger from the grand unification scale?

    hep-ph 2026-07 conditional novelty 6.5

    The KM3NeT 220 PeV event is read as X o u ū decay of a flavored onium relic at m_X=4.4e8 GeV, with lifetime fixing a mediator near 10^16 GeV under a single Higgs insertion.

  2. Probing Neutrino Flavor Composition with the Glashow Resonance at Tau Air-Shower Neutrino Telescopes

    hep-ph 2026-07 conditional novelty 6.0

    Tau air-shower telescopes can potentially measure the PeV \bar{\nu}_e/(\nu_\tau+\bar{\nu}_\tau) ratio via the Glashow resonance, but standalone sensitivity only clearly separates \bar{\nu}_e-rich sources from standard...

  3. Ultrahigh-energy cosmogenic neutrino emissions in the high-redshift universe

    astro-ph.HE 2026-04 conditional novelty 6.0

    If Little Red Dots accelerate protons to ~10 EeV, their interactions with the high-redshift CMB produce a ~50 PeV cosmogenic neutrino bump consistent with IceCube.

  4. The Two Orbital, Interacting Hatano-Nelson Model

    cond-mat.str-el 2026-04 unverdicted novelty 6.0

    In the two-orbital interacting Hatano-Nelson model, phase diagrams show regimes of purely real spectra controlled by interaction strength, non-Hermiticity, and interchain hopping, with links to skin modes and qualitat...

  5. The KM3NeT 220 PeV event: a neutrino messenger from the grand unification scale?

    hep-ph 2026-07 unverdicted novelty 5.0

    KM3-230213A is interpreted as X→νν̄ decay of a ~4.4×10^8 GeV flavored onium relic whose operator scale lands in the GUT/seesaw range of unified models.

  6. Ultrahigh-energy cosmogenic neutrino emissions in the high-redshift universe

    astro-ph.HE 2026-04 unverdicted novelty 5.0

    High-redshift AGN emitting UHE protons up to 10^19 eV generate a 50 PeV cosmogenic neutrino bump consistent with IceCube data from their JWST-measured average properties without fine-tuning.

  7. The Two Orbital, Interacting Hatano-Nelson Model

    cond-mat.str-el 2026-04 unverdicted novelty 5.0

    Phase diagrams for a purely real spectrum are obtained in the two-particle sector of a two-chain interacting Hatano–Nelson–Hubbard model, with winding-number and Lindblad checks of boundary and open-system behavior.

  8. Ultra-high energy event KM3-230213A as a cosmogenic neutrino in light of minimal UHECR flux models

    astro-ph.HE 2025-09 unverdicted novelty 4.0

    Minimal UHECR flux models from the Telescope Array predict cosmogenic neutrino fluxes consistent with the KM3-230213A event at the 2σ level.