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20012021
most citedOptical calibration of the SNO+ detector in the water phase with deployed sources

8 citations · 8 across the 1 of their papers we have counts for

collaborators

6 papers

physics.ins-det20218 cited

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,…

physics.ins-det2021

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…

physics.ins-det2020

Development, characterisation, and deployment of the SNO+ liquid scintillator

SNO+ Collaboration, :, M. R. Anderson +223

A liquid scintillator consisting of linear alkylbenzene as the solvent and 2,5-diphenyloxazole as the fluor was developed for the SNO+ experiment. This mixture was chosen as it is…

physics.ins-det2020

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…

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…

hep-th2001

Kinks and domain walls in models for real scalar fields

D. Bazeia, A. S. Inacio, L. Losano

We investigate several models described by real scalar fields, searching for topological defects, and investigating their linear stability. We also find bosonic zero modes and exam…