9 citations · 31 across the 6 of their papers we have counts for
6 papers · 1 filter
Low-Energy Physics in Neutrino LArTPCs
D. Caratelli, W. Foreman, A. Friedland +285
In this white paper, we outline some of the scientific opportunities and challenges related to detection and reconstruction of low-energy (less than 100 MeV) signatures in liquid a…
Optical calibration of the SNO+ detector in the water phase with deployed sources
SNO+ Collaboration, :, M. R. Anderson +120
SNO+ is a large-scale liquid scintillator experiment with the primary goal of searching for neutrinoless double beta decay, and is located approximately 2 km underground in SNOLAB,…
The SNO+ Experiment
SNO+ Collaboration, :, V. Albanese +251
The SNO+ experiment is located 2 km underground at SNOLAB in Sudbury, Canada. A low background search for neutrinoless double beta () decay will be conducted using 780 tonnes…
Measurement of neutron-proton capture in the SNO+ water phase
The SNO+ Collaboration, :, M. R. Anderson +130
The SNO+ experiment collected data as a low-threshold water Cherenkov detector from September 2017 to July 2019. Measurements of the 2.2-MeV produced by neutron capture on hydr…
Design and performance of a 35-ton liquid argon time projection chamber as a prototype for future very large detectors
D. L. Adams, M. Baird, G. Barr +71
Liquid argon time projection chamber technology is an attractive choice for large neutrino detectors, as it provides a high-resolution active target and it is expected to be scalab…
Photon detector system timing performance in the DUNE 35-ton prototype liquid argon time projection chamber
D. L. Adams, T. Alion, J. T. Anderson +75
The 35-ton prototype for the Deep Underground Neutrino Experiment far detector was a single-phase liquid argon time projection chamber with an integrated photon detector system, al…