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IceCube-BSM_Moriond2011.pdf
IceCube as a discovery observatory for physics beyond the standard model

IceCube has been completed in December 2010. It forms a lattice of 5160 photomultiplier tubes monitoring a gigaton of the deep Antarctic ice for particle induced photons. The telescope is primarily designed to detect neutrinos with energies greater than 100 GeV from astrophysical sources. Besides this astrophysical motivation IceCube is also a discovery instrument for the search for physics beyond the standard model. Owing to low ice temperatures, the photomultiplier dark noise rates are particularly low which open up tantalizing possibilities for particle detection. This includes the indirect detection of weakly interacting dark matter, direct detection of SUSY particles produced in very high energy interactions, monopoles and strangelets. Also the sensitivity to neutrino properties and Lorentz invariance is considered.

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Monday, March 7, 2011 01:48:23 PM CST
Wednesday, March 16, 2011 01:02:19 PM CDT
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  • Extra-Galactic March 2011 K.
  • Helbing - BSM with IceCube 4 Work horse detection channel of neutrino telescopes clear ice March 2011 K.
  • Helbing - BSM with IceCube 5 Astrophysics: Neutrino point sources All sky p-value: 18% No evidence yet Hottest location in all-sky search Ra=113.75, Dec=15.15 Pre-trial -log10(p-value) = 5.28 March 2011 K.
  • Helbing - BSM with IceCube 6 Cosmic rays: Anisotropies at TeV Milagro ~ 1 TeV IceCube prel.
  • ??p March 2011 K.
  • Helbing - BSM with IceCube 8 Spin dependent ?-p X-section March 2011 K. Helbing - BSM with IceCube 9 Cherenkov light monopole Cher. March 2011 K. Helbing - BSM with IceCube 14 EHE-neutrinos March 2011 K. Helbing - BSM with IceCube 15 BSM: ...
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Appears In: Recontres de Moriond: Electroweak
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