DUNE can set competitive bounds on refractive neutrino masses via supernova time-of-flight, with sensitivity significantly enhanced by galactic dark matter density spikes.
Title resolution pending
3 Pith papers cite this work. Polarity classification is still indexing.
verdicts
UNVERDICTED 3representative citing papers
Normal and inverted neutrino mass orderings tend to occupy different regions in ternary space when supernova neutrino flavor compositions are plotted across several models.
The AIT-WATCHMAN program at Boulby mine will use a 6000-ton Gd-doped water Cherenkov detector at 26 km standoff to study signal efficiency, backgrounds, and sensitivity for discovering reactor operations.
citing papers explorer
-
Shedding light on dark matter spikes through refractive neutrino masses
DUNE can set competitive bounds on refractive neutrino masses via supernova time-of-flight, with sensitivity significantly enhanced by galactic dark matter density spikes.
-
Investigating the Neutrino Mass Ordering Problem via Ternary Plots
Normal and inverted neutrino mass orderings tend to occupy different regions in ternary space when supernova neutrino flavor compositions are plotted across several models.
-
Far-Field Monitoring of Reactor Antineutrinos for Nonproliferation
The AIT-WATCHMAN program at Boulby mine will use a 6000-ton Gd-doped water Cherenkov detector at 26 km standoff to study signal efficiency, backgrounds, and sensitivity for discovering reactor operations.