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

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          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.

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          Author and article information

          Journal
          2016-06-01
          2016-09-19
          Article
          10.1140/epjc/s10052-016-4375-3
          1606.00209
          9c40e2dd-ad23-4004-bde5-4286247f54dd

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

          History
          Custom metadata
          Eur. Phys. J. C 76, 531 (2016)
          15 pages, 8 figures. Minor text changes. Matches version accepted by EPJC
          astro-ph.HE hep-ex

          High energy & Particle physics,High energy astrophysical phenomena
          High energy & Particle physics, High energy astrophysical phenomena

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