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The Giant Radio Array for Neutrino Detection (GRAND): Present and Perspectives

1 Pith paper cite this work, alongside 20 external citations. Polarity classification is still indexing.

1 Pith paper citing it
20 external citations · Pith
abstract

The Giant Radio Array for Neutrino Detection (GRAND) aims at detecting ultra-high energy extraterrestrial neutrinos via the extensive air showers induced by the decay of tau leptons created in the interaction of neutrinos under the Earth's surface. Consisting of an array of $\sim10^5$ radio antennas deployed over $\sim 2\times10^5\,\rm {km}^2$, GRAND plans to reach, for the first time, an all-flavor sensitivity of $\sim1.5\times10^{-10} \,\rm GeV\, cm^{-2} \,s^{-1}\, sr^{-1}$ above $5\times10^{17}$ eV and a sub-degree angular resolution, beyond the reach of other planned detectors. We describe here preliminary designs and simulation results, plans for the ongoing, staged approach to the construction of GRAND, and the rich research program made possible by GRAND's design sensitivity and angular resolution.

fields

astro-ph.HE 1

years

2026 1

verdicts

ACCEPT 1

representative citing papers

Active Galactic Nuclei as high-energy neutrino sources

astro-ph.HE · 2026-06-29 · accept · novelty 2.5

AGN (jetted and non-jetted) are viable high-energy neutrino sources, with TXS 0506+056 and NGC 1068 as the only statistically significant associations so far, while gamma-ray blazars contribute only a small fraction of the diffuse flux.

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Showing 1 of 1 citing paper.

  • Active Galactic Nuclei as high-energy neutrino sources astro-ph.HE · 2026-06-29 · accept · none · ref 223 · internal anchor

    AGN (jetted and non-jetted) are viable high-energy neutrino sources, with TXS 0506+056 and NGC 1068 as the only statistically significant associations so far, while gamma-ray blazars contribute only a small fraction of the diffuse flux.