We present a search for a neutrino signal from dark matter self-annihilations in the Milky Way using the Ice-Cube Neutrino Observatory (IceCube). In 1005 days of data we found no significant excess of neutrinos over the back-ground of neutrinos produced in atmospheric air showers from cosmic ray interactions. We derive upper limits on the velocity averaged product of the dark matter self-annihilation cross section and the relative velocity of the dark matter particles $(\sigma_A \nu)$. Upper limits are set for dark matter particle candidate masses ranging from 10 GeV up to 1 TeV while considering annihilation through multiple channels. This work sets the most stringent limit on a neutrino signal from dark matter with mass between 10 ...
We present a search for a neutrino signal from dark matter self-annihilations in the Milky Way using...
Self-annihilating or decaying dark matter in the Galactic halo might produce high energy neutrinos d...
Self-annihilating or decaying dark matter in the Galactic halo might produce high energy neutrinos d...
We present a search for a neutrino signal from dark matter self-annihilations in the Milky Way using...
We present a search for a neutrino signal from dark matter self-annihilations in the Milky Way using...
We present a search for a neutrino signal from dark matter self-annihilations in the Milky Way using...
We present a search for a neutrino signal from dark matter self-annihilations in the Milky Way using...
We present a search for a neutrino signal from dark matter self-annihilations in the Milky Way using...
We present a search for a neutrino signal from dark matter self-annihilations in the Milky Way using...
Abstract We present a search for a neutrino signal from dark matter self-annihilations in the Milky ...
We present a search for a neutrino signal from dark matter self-annihilations in the Milky Way using...
We present a search for a neutrino signal from dark matter self-annihilations in the Milky Way using...
We present a search for a neutrino signal from dark matter self-annihilations in the Milky Way using...
We present a search for a neutrino signal from dark matter self-annihilations in the Milky Way using...
We present a search for a neutrino signal from dark matter self-annihilations in the Milky Way using...
We present a search for a neutrino signal from dark matter self-annihilations in the Milky Way using...
Self-annihilating or decaying dark matter in the Galactic halo might produce high energy neutrinos d...
Self-annihilating or decaying dark matter in the Galactic halo might produce high energy neutrinos d...
We present a search for a neutrino signal from dark matter self-annihilations in the Milky Way using...
We present a search for a neutrino signal from dark matter self-annihilations in the Milky Way using...
We present a search for a neutrino signal from dark matter self-annihilations in the Milky Way using...
We present a search for a neutrino signal from dark matter self-annihilations in the Milky Way using...
We present a search for a neutrino signal from dark matter self-annihilations in the Milky Way using...
We present a search for a neutrino signal from dark matter self-annihilations in the Milky Way using...
Abstract We present a search for a neutrino signal from dark matter self-annihilations in the Milky ...
We present a search for a neutrino signal from dark matter self-annihilations in the Milky Way using...
We present a search for a neutrino signal from dark matter self-annihilations in the Milky Way using...
We present a search for a neutrino signal from dark matter self-annihilations in the Milky Way using...
We present a search for a neutrino signal from dark matter self-annihilations in the Milky Way using...
We present a search for a neutrino signal from dark matter self-annihilations in the Milky Way using...
We present a search for a neutrino signal from dark matter self-annihilations in the Milky Way using...
Self-annihilating or decaying dark matter in the Galactic halo might produce high energy neutrinos d...
Self-annihilating or decaying dark matter in the Galactic halo might produce high energy neutrinos d...