SEARCH FOR SOURCES OF HIGH-ENERGY NEUTRONS WITH FOUR YEARS OF DATA FROM THE ICETOP DETECTOR

IceTop is an air-shower array located on the Antarctic ice sheet at the geographic South Pole. IceTop can detect an astrophysical flux of neutrons from Galactic sources as an excess of cosmic-ray air showers arriving from the source direction. Neutrons are undeflected by the Galactic magnetic field...

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Veröffentlicht in:The Astrophysical journal 2016-10, Vol.830 (2)
Hauptverfasser: Aartsen, M. G., Abraham, K., Ackermann, M., Adams, J., Aguilar, J. A., Ansseau, I., Ahlers, M., Ahrens, M., Altmann, D., Anton, G., Andeen, K., Anderson, T., Archinger, M., Baum, V., Argüelles, C., Axani, S., Auffenberg, J., Bai, X., Barwick, S. W., Bay, R., Collaboration: IceCube Collaboration, others, and
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Sprache:eng
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Zusammenfassung:IceTop is an air-shower array located on the Antarctic ice sheet at the geographic South Pole. IceTop can detect an astrophysical flux of neutrons from Galactic sources as an excess of cosmic-ray air showers arriving from the source direction. Neutrons are undeflected by the Galactic magnetic field and can typically travel 10 ( E /PeV) pc before decay. Two searches are performed using 4 yr of the IceTop data set to look for a statistically significant excess of events with energies above 10 PeV (10{sup 16} eV) arriving within a small solid angle. The all-sky search method covers from −90° to approximately −50° in declination. No significant excess is found. A targeted search is also performed, looking for significant correlation with candidate sources in different target sets. This search uses a higher-energy cut (100 PeV) since most target objects lie beyond 1 kpc. The target sets include pulsars with confirmed TeV energy photon fluxes and high-mass X-ray binaries. No significant correlation is found for any target set. Flux upper limits are determined for both searches, which can constrain Galactic neutron sources and production scenarios.
ISSN:0004-637X
1538-4357