Pith. sign in

REVIEW 4 cited by

All-flavour Search for Neutrinos from Dark Matter Annihilations in the Milky Way with IceCube/DeepCore

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 1606.00209 v2 pith:5QILK6KB submitted 2016-06-01 astro-ph.HE hep-ex

IceCube collaboration: M. G. Aartsen , K. Abraham , M. Ackermann , J. Adams , J. A. Aguilar , M. Ahlers , M. Ahrens , D. Altmann
show 313 more authors
K. Andeen T. Anderson I. Ansseau G. Anton M. Archinger C. Arguelles T. C. Arlen J. Auffenberg S. Axani X. Bai S. W. Barwick V. Baum R. Bay J. J. Beatty J. Becker Tjus K.-H. Becker S. BenZvi P. Berghaus D. Berley E. Bernardini A. Bernhard D. Z. Besson G. Binder D. Bindig M. Bissok E. Blaufuss S. Blot D. J. Boersma C. Bohm M. Börner F. Bos D. Bose S. Böser O. Botner J. Braun L. Brayeur H.-P. Bretz A. Burgman J. Casey M. Casier E. Cheung D. Chirkin A. Christov K. Clark L. Classen S. Coenders G. H. Collin J. M. Conrad D. F. Cowen A. H. Cruz Silva J. Daughhetee J. C. Davis M. Day J. P. A. M. de André C. De Clercq E. del Pino Rosendo H. Dembinski S. De Ridder P. Desiati K. D. de Vries G. de Wasseige M. de With T. DeYoung J. C. Díaz-Vélez V. di Lorenzo H. Dujmovic J. P. Dumm M. Dunkman B. Eberhardt T. Ehrhardt B. Eichmann S. Euler P. A. Evenson S. Fahey A. R. Fazely J. Feintzeig J. Felde K. Filimonov C. Finley S. Flis C.-C. Fösig A. Franckowiak T. Fuchs T. K. Gaisser R. Gaior J. Gallagher L. Gerhardt K. Ghorbani W. Giang L. Gladstone M. Glagla T. Glüsenkamp A. Goldschmidt G. Golup J. G. Gonzalez D. Góra D. Grant Z. Griffith C. Haack A. Haj Ismail A. Hallgren F. Halzen E. Hansen B. Hansmann T. Hansmann K. Hanson D. Hebecker D. Heereman K. Helbing R. Hellauer S. Hickford J. Hignight G. C. Hill K. D. Hoffman R. Hoffmann K. Holzapfel A. Homeier K. Hoshina F. Huang M. Huber W. Huelsnitz K. Hultqvist S. In A. Ishihara E. Jacobi G. S. Japaridze M. Jeong K. Jero B. J. P. Jones M. Jurkovic A. Kappes T. Karg A. Karle U. Katz M. Kauer A. Keivani J. L. Kelley J. Kemp A. Kheirandish M. Kim T. Kintscher J. Kiryluk T. Kittler S. R. Klein G. Kohnen R. Koirala H. Kolanoski R. Konietz L. Köpke C. Kopper S. Kopper D. J. Koskinen M. Kowalski K. Krings M. Kroll G. Krückl C. Krüger J. Kunnen S. Kunwar N. Kurahashi T. Kuwabara M. Labare J. L. Lanfranchi M. J. Larson D. Lennarz M. Lesiak-Bzdak M. Leuermann J. Leuner L. Lu J. Lünemann J. Madsen G. Maggi K. B. M. Mahn S. Mancina M. Mandelartz R. Maruyama K. Mase R. Maunu F. McNally K. Meagher M. Medici M. Meier A. Meli T. Menne G. Merino T. Meures S. Miarecki E. Middell L. Mohrmann T. Montaruli M. Moulai R. Nahnhauer U. Naumann G. Neer H. Niederhausen S. C. Nowicki D. R. Nygren A. Obertacke Pollmann A. Olivas A. Omairat A. O'Murchadha T. Palczewski H. Pandya D. V. Pankova Ö. Penek J. A. Pepper C. Pérez de los Heros C. Pfendner D. Pieloth E. Pinat J. Posselt P. B. Price G. T. Przybylski M. Quinnan C. Raab L. Rädel M. Rameez K. Rawlins R. Reimann M. Relich E. Resconi W. Rhode M. Richman B. Riedel S. Robertson M. Rongen C. Rott T. Ruhe D. Ryckbosch D. Rysewyk L. Sabbatini S. E. Sanchez Herrera A. Sandrock J. Sandroos S. Sarkar K. Satalecka M. Schimp P. Schlunder T. Schmidt S. Schoenen S. Schöneberg A. Schönwald L. Schumacher D. Seckel S. Seunarine D. Soldin M. Song G. M. Spiczak C. Spiering M. Stahlberg M. Stamatikos T. Stanev A. Stasik A. Steuer T. Stezelberger R. G. Stokstad A. Stö{ss}l R. Ström N. L. Strotjohann G. W. Sullivan M. Sutherland H. Taavola I. Taboada J. Tatar F. Tenholt S. Ter-Antonyan A. Terliuk G. Tešić S. Tilav P. A. Toale M. N. Tobin S. Toscano D. Tosi M. Tselengidou A. Turcati E. Unger M. Usner S. Vallecorsa J. Vandenbroucke N. van Eijndhoven S. Vanheule M. van Rossem J. van Santen J. Veenkamp M. Vehring M. Voge M. Vraeghe C. Walck A. Wallace M. Wallraff N. Wandkowsky Ch. Weaver C. Wendt S. Westerhoff B. J. Whelan S. Wickmann K. Wiebe C. H. Wiebusch L. Wille D. R. Williams L. Wills H. Wissing M. Wolf T. R. Wood E. Woolsey K. Woschnagg D. L. Xu X. W. Xu Y. Xu J. P. Yanez G. Yodh S. Yoshida M. Zoll
This is my paper
classification astro-ph.HEhep-ex
keywords icecubedarkmatterall-flavourdeepcoreanalysisannihilationscascades
verification ladder T0 review T1 audit T2 compute T3 formal
0 comments
read the original abstract

We present the first IceCube search for a signal of dark matter annihilations in the Milky Way using all-flavour neutrino-induced particle cascades. The analysis focuses on the DeepCore sub-detector of IceCube, and uses the surrounding IceCube strings as a veto region in order to select starting events in the DeepCore volume. We use 329 live-days of data from IceCube operating in its 86-string configuration during 2011-2012. No neutrino excess is found, the final result being compatible with the background-only hypothesis. From this null result, we derive upper limits on the velocity-averaged self-annihilation cross-section, < \sigma_A v >, for dark matter candidate masses ranging from 30 GeV up to 10 TeV, assuming both a cuspy and a flat-cored dark matter halo profile. For dark matter masses between 200 GeV and 10 TeV, the results improve on all previous IceCube results on < \sigma_A v >, reaching a level of 10^{-23} cm^3 s^-1, depending on the annihilation channel assumed, for a cusped NFW profile. The analysis demonstrates that all-flavour searches are competitive with muon channel searches despite the intrinsically worse angular resolution of cascades compared to muon tracks in IceCube.

Discussion (0). Sign in to comment.

Forward citations

Cited by 4 Pith papers

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

  1. The potential of diffuse Galactic Ridge neutrino measurements to constrain dark matter

    astro-ph.HE 2026-05 conditional novelty 6.0 of 10

    ANTARES Galactic Ridge upper limits yield competitive dark-matter annihilation/decay bounds, the first neutrino-based branon constraints, and a negative KM3NeT forecast for the thermal relic cross-section.

  2. Search for GeV-scale Dark Matter from the Galactic Center with IceCube-DeepCore

    astro-ph.HE 2025-11 conditional novelty 6.0 of 10

    Using 9.28 years of IceCube-DeepCore data, no dark-matter neutrino signal is found from the Galactic Center, setting the strongest neutrino-telescope limits for GeV-scale annihilation and decay.

  3. Testing Heavy Dark Matter Decay as the Origin of KM3-230213A

    hep-ex 2026-06 unverdicted novelty 4.0 of 10

    Assuming the KM3-230213A event comes from heavy dark matter decay, the preferred mass exceeds 100 PeV at 95% CL with lifetimes of 10^26-10^27 s, but these regions conflict with bounds from other neutrino telescopes an...

  4. The potential of diffuse Galactic Ridge neutrino measurements to constrain dark matter

    astro-ph.HE 2026-05 unverdicted novelty 4.0 of 10

    ANTARES Galactic Ridge neutrino measurements can constrain annihilating and decaying dark matter for various masses and profiles while comparing to astrophysical backgrounds, with forecasts for future observatories.

Pith tools