International audienceIceCube and ANTARES are the world-largest neutrino telescopes. They are successfully taking data, producing a wealth of scientific results. Whereas their main goal is the detection of cosmic neutrinos with energies in the TeV-PeV range, both have demonstrated their capability to measure neutrino oscillations by studying atmospheric neutrinos with energies of 10-50 GeV. After recalling the methods of these measurements and the first published results of these searches, the potential of existing, and planned low-energy extensions of IceCube and KM3Net are discussed. These new detectors will be able to improve the knowledge of the atmospheric neutrino oscillation parameters, and in particular they might help to understand...
We present a measurement of the atmospheric neutrino oscillation parameters using three years of dat...
International audienceANTARES is a large neutrino telescope located at 2475~m below the Mediterranea...
We present a measurement of the atmospheric neutrino oscillation parameters using three years of dat...
International audienceIceCube and ANTARES are the world-largest neutrino telescopes. They are succes...
High energy neutrino telescopes such as IceCube, ANTARES, and the future KM3NeT can measure flavor o...
The discovery of high-energy cosmic neutrinos by IceCube in 2013 has made neutrino astronomy become ...
The IceCube neutrino observatory at the South Pole is the largest operating neutrino detector in the...
Using neutrinos as cosmic messengers for observation of non-thermal processes in the Universe is a h...
The primary motivation for building neutrino telescopes is to open the road for neutrino astronomy, ...
We present a measurement of the atmospheric neutrino oscillation parameters using three years of dat...
IceCube, a gigaton-scale neutrino detector located at the South Pole, was primarily designed to sear...
We present a measurement of the atmospheric neutrino oscillation parameters using three years of dat...
We present a measurement of the atmospheric neutrino oscillation parameters using three years of dat...
International audienceANTARES is a large neutrino telescope located at 2475~m below the Mediterranea...
We present a measurement of the atmospheric neutrino oscillation parameters using three years of dat...
International audienceIceCube and ANTARES are the world-largest neutrino telescopes. They are succes...
High energy neutrino telescopes such as IceCube, ANTARES, and the future KM3NeT can measure flavor o...
The discovery of high-energy cosmic neutrinos by IceCube in 2013 has made neutrino astronomy become ...
The IceCube neutrino observatory at the South Pole is the largest operating neutrino detector in the...
Using neutrinos as cosmic messengers for observation of non-thermal processes in the Universe is a h...
The primary motivation for building neutrino telescopes is to open the road for neutrino astronomy, ...
We present a measurement of the atmospheric neutrino oscillation parameters using three years of dat...
IceCube, a gigaton-scale neutrino detector located at the South Pole, was primarily designed to sear...
We present a measurement of the atmospheric neutrino oscillation parameters using three years of dat...
We present a measurement of the atmospheric neutrino oscillation parameters using three years of dat...
International audienceANTARES is a large neutrino telescope located at 2475~m below the Mediterranea...
We present a measurement of the atmospheric neutrino oscillation parameters using three years of dat...