TY - JOUR AU - DUNE Collaboration (Abi, B. et al AU - Antonova, M. AU - Barenboim, G. AU - Cervera-Villanueva, A. AU - De Romeri, V. AU - Fernandez Menendez, P. AU - Garcia-Peris, M. A. AU - Izmaylov, A. AU - Martin-Albo, J. AU - Masud, M. AU - Mena, O. AU - Novella, P. AU - Sorel, M. AU - Ternes, C. A. AU - Tortola, M. AU - Valle, J. W. F. PY - 2021 DA - 2021// TI - Supernova neutrino burst detection with the Deep Underground Neutrino Experiment T2 - Eur. Phys. J. C JO - European Physical Journal C SP - 423 - 26pp VL - 81 IS - 5 PB - Springer AB - The Deep Underground Neutrino Experiment (DUNE), a 40-kton underground liquid argon time projection chamber experiment, will be sensitive to the electron-neutrino flavor component of the burst of neutrinos expected from the next Galactic core-collapse supernova. Such an observation will bring unique insight into the astrophysics of core collapse as well as into the properties of neutrinos. The general capabilities of DUNE for neutrino detection in the relevant few- to few-tens-of-MeV neutrino energy range will be described. As an example, DUNE's ability to constrain the nu(e) spectral parameters of the neutrino burst will be considered. SN - 1434-6044 UR - https://arxiv.org/abs/2008.06647 UR - https://doi.org/10.1140/epjc/s10052-021-09166-w DO - 10.1140/epjc/s10052-021-09166-w LA - English N1 - WOS:000661101700001 ID - DUNECollaborationAbi_etal2021 ER -