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Towards High-Energy Neutrino Astronomy. A Historical Review

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arxiv 1207.4952 v1 pith:VH64CONP submitted 2012-07-20 astro-ph.IM astro-ph.HEphysics.hist-ph

classification astro-ph.IMastro-ph.HEphysics.hist-ph
keywords neutrinosrayswillcosmicdetectdetectorsenergyfirst
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The search for the sources of cosmic rays is a three-fold assault, using charged cosmic rays, gamma rays and neutrinos. The first conceptual ideas to detect high energy neutrinos date back to the late fifties. The long evolution towards detectors with a realistic discovery potential started in the seventies and eighties, with the pioneering works in the Pacific Ocean close to Hawaii and in Lake Baikal in Siberia. But only now, half a century after the first concepts, such a detector is in operation: IceCube at the South Pole. We do not yet know whether with IceCube we will indeed detect extraterrestrial high energy neutrinos or whether this will remain the privilege of next generation telescopes. But whatever the answer will be: the path to the present detectors was a remarkable journey. This review sketches its main milestones.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Sensitivity of nEXO to $^{136}$Xe Charged-Current Interactions: Background-free Searches for Solar Neutrinos and Fermionic Dark Matter

    nucl-ex 2025-06 conditional novelty 6.0 of 10

    A new delayed-coincidence tag from 136Cs isomers could let the nEXO detector reject backgrounds down to 10^-9 and measure CNO solar neutrinos, the 7Be neutrino energy, and sub-MeV fermionic dark matter.

  2. Transforming Antarctic Ice into a Cherenkov Neutrino Detector

    astro-ph.HE 2024-11 unverdicted

    IceCube built a cubic-kilometer Cherenkov detector in Antarctic ice and discovered a diffuse flux of cosmic neutrinos, identified the first neutrino sources, and observed the Galactic plane in neutrinos.

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