IceCube-Gen2: the window to the extreme Universe


Abstract:

The observation of electromagnetic radiation from radio to γ-ray wavelengths has provided a wealth of information about the Universe. However, at PeV (10 15 eV) energies and above, most of the Universe is impenetrable to photons. New messengers, namely cosmic neutrinos, are needed to explore the most extreme environments of the Universe where black holes, neutron stars, and stellar explosions transform gravitational energy into non-thermal cosmic rays. These energetic particles have millions of times higher energies than those produced in the most powerful particle accelerators on Earth. As neutrinos can escape from regions otherwise opaque to radiation, they allow an unique view deep into exploding stars and the vicinity of the event horizons of black holes. The discovery of cosmic neutrinos with IceCube has opened this new window on the Universe. IceCube has been successful in finding first …

Año de publicación:

2021

Keywords:

    Fuente:

    googlegoogle

    Tipo de documento:

    Other

    Estado:

    Acceso abierto

    Áreas de conocimiento:

      Áreas temáticas de Dewey:

      • Física
      • Astronomía y ciencias afines
      • Cuerpos y fenómenos celestes específicos
      Procesado con IAProcesado con IA

      Objetivos de Desarrollo Sostenible:

      • ODS 9: Industria, innovación e infraestructura
      • ODS 17: Alianzas para lograr los objetivos
      • ODS 4: Educación de calidad
      Procesado con IAProcesado con IA