Abstract. IceCube is the first representative of the km3 class of neutrino telescopes and currently the most sensitive detector to high-energy neutrinos. Its main mission is to search for Galactic and extragalactic sources of high-energy neutrinos, but it is also an excellent detector for the investigation of a variety of other highly topical astrophysics and particle physics topics like supernovae, dark matter and neutrino oscillations. After an introduction to neutrino astronomy and neutrino telescopes, this article presents a selection of latest results from the IceCube neutrino detector with respect to searches for cosmic high-energy neutrino sources. 1
Abstract. The completed IceCube Observatory, the first km3 neutrino telescope, is already providing ...
The IceCube Neutrino Observatory is a cubic-kilometer neutrino telescope located at the geographic S...
We report on the current construction status of the IceCube high energy neutrino observatory and pos...
The IceCube Neutrino Observatory is a cubic kilometer neutrino telescope located at the Geographic S...
With the completion of the first cubic-kilometer class neutrino telescopes, IceCube, the race for th...
The IceCube Neutrino Observatory, located near the geographic South Pole, is currently the world’s l...
The primary motivation for building neutrino telescopes is to open the road for neutrino astronomy, ...
IceCube is a ≳TeV neutrino observatory operating at the South Pole. Ice-Cube has observed a flux of ...
AbstractWith the discovery of a high-energy neutrino flux in the 0.1 PeV to PeV range from beyond th...
The IceCube detector is a multipurpose neutrino observatory located at the South Pole. With an instr...
Abstract. The IceCube Neutrino Observatory is a 1 km3 detector currently under construction at the S...
IceCube is a 1 km3 neutrino observatory being built to study neutrino production in active galactic ...
Abstract. With the recent discovery of high-energy neutrinos of extra-terrestrial origin by the IceC...
The IceCube Neutrino Observatory, a cubic kilometer telescope located in the Antarctic ice, offers u...
The core mission of the IceCube neutrino observatory is to study the origin and propagation of cosmi...
Abstract. The completed IceCube Observatory, the first km3 neutrino telescope, is already providing ...
The IceCube Neutrino Observatory is a cubic-kilometer neutrino telescope located at the geographic S...
We report on the current construction status of the IceCube high energy neutrino observatory and pos...
The IceCube Neutrino Observatory is a cubic kilometer neutrino telescope located at the Geographic S...
With the completion of the first cubic-kilometer class neutrino telescopes, IceCube, the race for th...
The IceCube Neutrino Observatory, located near the geographic South Pole, is currently the world’s l...
The primary motivation for building neutrino telescopes is to open the road for neutrino astronomy, ...
IceCube is a ≳TeV neutrino observatory operating at the South Pole. Ice-Cube has observed a flux of ...
AbstractWith the discovery of a high-energy neutrino flux in the 0.1 PeV to PeV range from beyond th...
The IceCube detector is a multipurpose neutrino observatory located at the South Pole. With an instr...
Abstract. The IceCube Neutrino Observatory is a 1 km3 detector currently under construction at the S...
IceCube is a 1 km3 neutrino observatory being built to study neutrino production in active galactic ...
Abstract. With the recent discovery of high-energy neutrinos of extra-terrestrial origin by the IceC...
The IceCube Neutrino Observatory, a cubic kilometer telescope located in the Antarctic ice, offers u...
The core mission of the IceCube neutrino observatory is to study the origin and propagation of cosmi...
Abstract. The completed IceCube Observatory, the first km3 neutrino telescope, is already providing ...
The IceCube Neutrino Observatory is a cubic-kilometer neutrino telescope located at the geographic S...
We report on the current construction status of the IceCube high energy neutrino observatory and pos...