Pith. sign in

REVIEW

Search for neutrino-induced particle showers with IceCube-40

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 1312.0104 v1 pith:ASO4DAKC submitted 2013-11-30 astro-ph.HE

Search for neutrino-induced particle showers with IceCube-40

IceCube Collaboration: M. G. Aartsen , R. Abbasi , M. Ackermann , J. Adams , J. A. Aguilar , M. Ahlers , D. Altmann , C. Arguelles
show 281 more authors
T. C. Arlen J. Auffenberg X. Bai M. Baker 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 J. Blumenthal D. J. Boersma C. Bohm D. Bose S. B\"oser O. Botner L. Brayeur H.-P. Bretz A. M. Brown R. Bruijn J. Casey M. Casier D. Chirkin A. Christov B. Christy K. Clark L. Classen F. Clevermann S. Coenders S. Cohen D. F. Cowen A. H. Cruz Silva M. Danninger J. Daughhetee J. C. Davis M. Day J. P. A. M. de Andr\'e C. De Clercq S. De Ridder P. Desiati K. D. de Vries M. de With T. DeYoung J. C. D\'iaz-V\'elez M. Dunkman R. Eagan B. Eberhardt B. Eichmann J. Eisch S. Euler P. A. Evenson O. Fadiran A. R. Fazely A. Fedynitch J. Feintzeig T. Feusels K. Filimonov C. Finley T. Fischer-Wasels S. Flis A. Franckowiak K. Frantzen T. Fuchs T. K. Gaisser J. Gallagher L. Gerhardt L. Gladstone T. Gl\"usenkamp A. Goldschmidt G. Golup J. G. Gonzalez J. A. Goodman D. G\'ora D. T. Grandmont D. Grant P. Gretskov J. C. Groh A. Gro{\ss} C. Ha A. Haj Ismail P. Hallen A. Hallgren F. Halzen K. Hanson D. Hebecker D. Heereman D. Heinen K. Helbing R. Hellauer S. Hickford G. C. Hill K. D. Hoffman R. Hoffmann A. Homeier K. Hoshina F. Huang W. Huelsnitz P. O. Hulth K. Hultqvist S. Hussain A. Ishihara E. Jacobi J. Jacobsen K. Jagielski G. S. Japaridze K. Jero O. Jlelati B. Kaminsky A. Kappes T. Karg A. Karle M. Kauer J. L. Kelley J. Kiryluk J. Kl\"as S. R. Klein J.-H. K\"ohne G. Kohnen H. Kolanoski L. K\"opke C. Kopper S. Kopper D. J. Koskinen M. Kowalski M. Krasberg A. Kriesten K. Krings G. Kroll J. Kunnen N. Kurahashi T. Kuwabara M. Labare H. Landsman M. J. Larson M. Lesiak-Bzdak M. Leuermann J. Leute J. L\"unemann O. Mac\'ias J. Madsen G. Maggi R. Maruyama K. Mase H. S. Matis F. McNally K. Meagher M. Merck T. Meures S. Miarecki E. Middell N. Milke J. Miller L. Mohrmann T. Montaruli R. Morse R. Nahnhauer U. Naumann H. Niederhausen S. C. Nowicki D. R. Nygren A. Obertacke S. Odrowski A. Olivas A. Omairat A. O'Murchadha T. Palczewski L. Paul J. A. Pepper C. P\'erez de los Heros C. Pfendner D. Pieloth E. Pinat J. Posselt P. B. Price G. T. Przybylski M. Quinnan L. R\"adel M. Rameez K. Rawlins P. Redl R. Reimann E. Resconi W. Rhode M. Ribordy M. Richman B. Riedel S. Robertson J. P. Rodrigues C. Rott T. Ruhe B. Ruzybayev D. Ryckbosch S. M. Saba H.-G. Sander M. Santander S. Sarkar K. Schatto F. Scheriau T. Schmidt M. Schmitz S. Schoenen S. Sch\"oneberg A. Sch\"onwald A. Schukraft L. Schulte O. Schulz D. Seckel Y. Sestayo S. Seunarine R. Shanidze C. Sheremata M. W. E. Smith D. Soldin G. M. Spiczak C. Spiering M. Stamatikos T. Stanev N. A. Stanisha A. Stasik T. Stezelberger R. G. Stokstad A. St\"o{\ss}l E. A. Strahler R. Str\"om N. L. Strotjohann G. W. Sullivan H. Taavola I. Taboada A. Tamburro A. Tepe S. Ter-Antonyan G. Te\v{s}i\'c S. Tilav P. A. Toale M. N. Tobin S. Toscano M. Tselengidou E. Unger M. Usner S. Vallecorsa N. van Eijndhoven A. Van Overloop J. van Santen M. Vehring M. Voge M. Vraeghe C. Walck T. Waldenmaier M. Wallraff Ch. Weaver M. Wellons C. Wendt S. Westerhoff B. Whelan N. Whitehorn K. Wiebe C. H. Wiebusch D. R. Williams H. Wissing M. Wolf T. R. Wood K. Woschnagg D. L. Xu X. W. Xu J. P. Yanez G. Yodh S. Yoshida P. Zarzhitsky J. Ziemann S. Zierke M. Zoll
This is my paper
classification astro-ph.HE
keywords atmosphericeventsneutrinoenergyneutrinoswereanalysisastrophysical
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
0 comments
read the original abstract

We report on the search for neutrino-induced particle-showers, so-called cascades, in the IceCube-40 detector. The data for this search was collected between April 2008 and May 2009 when the first 40 IceCube strings were deployed and operational. Three complementary searches were performed, each optimized for different energy regimes. The analysis with the lowest energy threshold (2 TeV) targeted atmospheric neutrinos. A total of 67 events were found, consistent with the expectation of 41 atmospheric muons and 30 atmospheric neutrino events. The two other analyses targeted a harder, astrophysical neutrino flux. The analysis with an intermediate threshold of 25 TeV lead to the observation of 14 cascade-like events, again consistent with the prediction of 3.0 atmospheric neutrino and 7.7 atmospheric muon events. We hence set an upper limit of $E^2 \Phi_{lim} \leq 7.46\times10^{-8}\,\mathrm{GeV sr^{-1} s^{-1} cm^{-2}}$ (90% C.L.) on the diffuse flux from astrophysical neutrinos of all neutrino flavors, applicable to the energy range 25 TeV to 5 PeV, assuming an $E_{\nu}^{-2}$ spectrum and a neutrino flavor ratio of 1:1:1 at the Earth. The third analysis utilized a larger and optimized sample of atmospheric muon background simulation, leading to a higher energy threshold of 100 TeV. Three events were found over a background prediction of 0.04 atmospheric muon events and 0.21 events from the flux of conventional and prompt atmospheric neutrinos. Including systematic errors this corresponds to a $2.7\sigma$ excess with respect to the background-only hypothesis. Our observation of neutrino event candidates above 100 TeV complements IceCube's recently observed evidence for high-energy astrophysical neutrinos.

discussion (0)

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