The Giant Radio Array for Neutrino Detection
Abstract
High-energy neutrino astronomy will probe the working of the most violent phenomena in the Universe. The Giant Radio Array for Neutrino Detection (GRAND) project consists of an array of radio antennas deployed over 200000km in a mountainous site. It aims at detecting high-energy neutrinos via the measurement of air showers induced by the decay in the atmosphere of leptons produced by the interaction of the cosmic neutrinos under the Earth surface. Our objective with GRAND is to reach a neutrino sensitivity of GeVcmssr above eV. This sensitivity ensures the detection of cosmogenic neutrinos in the most pessimistic source models, and about 100 events per year are expected for the standard models. GRAND would also probe the neutrino signals produced at the potential sources of UHECRs. We show how our preliminary design should enable us to reach our sensitivity goals, and present the experimental characteristics. We assess the possibility to adapt GRAND to other astrophysical radio measurements. We discuss in this token the technological options for the detector and the steps to be taken to achieve the GRAND project.
Cite
@article{arxiv.1508.01919,
title = {The Giant Radio Array for Neutrino Detection},
author = {Olivier Martineau-Huynh and Kumiko Kotera and Didier Charrier and Sijbrand De Jong and Krijn D. de Vries and Ke Fang and Zhaoyang Feng and Chad Finley and Quanbu Gou and Junhua Gu and Hongbo Hu and Kohta Murase and Valentin Niess and Foteini Oikonomou and Nicolas Renault-Tinacci and Julia Schmid and Charles Timmermans and Zhen Wang and Xiangping Wu and Jianli Zhang and Yi Zhang},
journal= {arXiv preprint arXiv:1508.01919},
year = {2016}
}
Comments
8 pages, 2 figures, 34th ICRC conference