activity
20182020
most citedPrecision laser-based measurements of the single electron response of SPCs for the NEWS-G light dark matter search experiment

36 citations · 36 across the 1 of their papers we have counts for

collaborators

6 papers

astro-ph.IM2020

Design and construction of a new detector to measure ultra-low radioactive-isotope contamination of argon

The DarkSide Collaboration, C. E. Aalseth, S. Abdelhakim +328

Large liquid argon detectors offer one of the best avenues for the detection of galactic weakly interacting massive particles (WIMPs) via their scattering on atomic nuclei. The liq…

physics.ins-det2020

The liquid-argon scintillation pulseshape in DEAP-3600

The DEAP collaboration, P. Adhikari, R. Ajaj +98

DEAP-3600 is a liquid-argon scintillation detector looking for dark matter. Scintillation events in the liquid argon (LAr) are registered by 255 photomultiplier tubes (PMTs), and p…

nucl-ex2019

Electromagnetic Backgrounds and Potassium-42 Activity in the DEAP-3600 Dark Matter Detector

R. Ajaj, G. R. Araujo, M. Batygov +88

The DEAP-3600 experiment is searching for WIMP dark matter with a 3.3 tonne single phase liquid argon (LAr) target, located 2.1 km underground at SNOLAB. The experimental signature…

physics.ins-det201936 cited

Precision laser-based measurements of the single electron response of SPCs for the NEWS-G light dark matter search experiment

G Collaboration, Q. Arnaud, J. -P. Bard +36

Spherical Proportional Counters (SPCs) are a novel gaseous detector technology employed by the NEWS-G low-mass dark matter search experiment for their high sensitivity to single el…

astro-ph.CO2019

Search for dark matter with a 231-day exposure of liquid argon using DEAP-3600 at SNOLAB

R. Ajaj, P. -A. Amaudruz, G. R. Araujo +99

DEAP-3600 is a single-phase liquid argon (LAr) direct-detection dark matter experiment, operating 2 km underground at SNOLAB (Sudbury, Canada). The detector consists of 3279 kg of…

hep-ex2018

Search for invisible modes of nucleon decay in water with the SNO+ detector

SNO+ Collaboration, :, M. Anderson +195

This paper reports results from a search for nucleon decay through 'invisible' modes, where no visible energy is directly deposited during the decay itself, during the initial wate…