We present results from an analysis looking for dark matter annihilation in the Sun with the IceCube neutrino telescope. Gravitationally trapped dark matter in the Sun’s core can annihilate into Standard Model particles making the Sun a source of GeV neutrinos. IceCube is able to detect neutrinos with energies >100 GeV while its low-energy infill array DeepCore extends this to >10 GeV. This analysis uses data gathered in the austral winters between May 2011 and May 2014, corresponding to 532 days of livetime when the Sun, being below the horizon, is a source of up-going neutrino events, easiest to discriminate against the dominant background of atmospheric muons. The sensitivity is a factor of two to four better than previous searches due ...
Published 21 March 2022The Sun provides an excellent target for studying spin-dependent dark matter-...
The Sun provides an excellent target for studying spin-dependent dark matter-proton scattering due t...
The Sun provides an excellent target for studying spin-dependent dark matter-proton scattering due t...
We present results from an analysis looking for dark matter annihilation in the Sun with the IceCube...
We present results from an analysis looking for dark matter annihilation in the Sun with the IceCube...
Abstract We present results from an analysis looking for dark matter annihilation in the Sun with th...
We present results from an analysis looking for dark matter annihilation in the Sun with the IceCube...
We present results from an analysis looking for dark matter annihilation in the Sun with the IceCube...
We present results from an analysis looking for dark matter annihilation in the Sun with the IceCube...
We present results from an analysis looking for dark matter annihilation in the Sun with the IceCube...
We present results from an analysis looking for dark matter annihilation in the Sun with the IceCube...
We present results from an analysis looking for darkmatter annihilation in the Sun with the IceCube ...
We present results from an analysis looking for darkmatter annihilation in the Sun with the IceCube ...
The Sun provides an excellent target for studying spin-dependent dark matter-proton scattering due t...
The Sun provides an excellent target for studying spin-dependent dark matter-proton scattering due t...
Published 21 March 2022The Sun provides an excellent target for studying spin-dependent dark matter-...
The Sun provides an excellent target for studying spin-dependent dark matter-proton scattering due t...
The Sun provides an excellent target for studying spin-dependent dark matter-proton scattering due t...
We present results from an analysis looking for dark matter annihilation in the Sun with the IceCube...
We present results from an analysis looking for dark matter annihilation in the Sun with the IceCube...
Abstract We present results from an analysis looking for dark matter annihilation in the Sun with th...
We present results from an analysis looking for dark matter annihilation in the Sun with the IceCube...
We present results from an analysis looking for dark matter annihilation in the Sun with the IceCube...
We present results from an analysis looking for dark matter annihilation in the Sun with the IceCube...
We present results from an analysis looking for dark matter annihilation in the Sun with the IceCube...
We present results from an analysis looking for dark matter annihilation in the Sun with the IceCube...
We present results from an analysis looking for darkmatter annihilation in the Sun with the IceCube ...
We present results from an analysis looking for darkmatter annihilation in the Sun with the IceCube ...
The Sun provides an excellent target for studying spin-dependent dark matter-proton scattering due t...
The Sun provides an excellent target for studying spin-dependent dark matter-proton scattering due t...
Published 21 March 2022The Sun provides an excellent target for studying spin-dependent dark matter-...
The Sun provides an excellent target for studying spin-dependent dark matter-proton scattering due t...
The Sun provides an excellent target for studying spin-dependent dark matter-proton scattering due t...