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SNO+ is a large liquid scintillator-based experiment located 2km underground at SNOLAB, Sudbury, Canada.
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2004
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SNO Collaboration, S. N. Ahmed et al., “Constraints on nucleon decay via invisible modes from the Sudbury Neutrino Observatory”,
2004
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M. C. Chen, “The SNO Liquid Scintillator Project”,
2005
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C. Galbiati, A. Pocar, D. Franco, A. Ianni, L. Cadonati, and S. Schönert, “Cosmogenic
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SNO Collaboration, B. Aharmim et al., “Electron energy spectra, fluxes, and day-night asymmetries of
2005
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KamLAND Collaboration, T. Araki et al., “Search for the invisible decay of neutrons with KamLAND”,
2006
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SNO Collaboration, B. Aharmim et al., “Measurement of the cosmic ray and neutrino-induced muon flux at the Sudbury Neutrino Observatory”,
2009
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N. Jelley, A. B. McDonald, and R.G. H. Robertson, “The Sudbury Neutrino Observatory”,
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2009
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2009
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2009
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S. Enomoto, “Using Neutrinos to study the Earth: Geo-Neutrinos”,
2009
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G. Pagliaroli, F. Vissani, M. L. Costantini, and A. Ianni, “Improved analysis of SN1987A antineutrino events”,
2009
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2012
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2012
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2012
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2012
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2010
Cited alongside, same era.
T. R. Rodríguez and G. Martínez-Pinedo, “Energy density functional study of nuclear matrix elements for neutrinoless
2010
Cited alongside, same era.
Borexino Collaboration, G. Bellini et al., “Measurement of the solar
2010
Cited alongside, same era.
A. M. Serenelli, W. C. Haxton, and C. Peña-Garay, “Solar Models with Accretion. I. Application to the Solar Abundance Problem”,
2011
Cited alongside, same era.
P. G. Jones, “Background rejection for the neutrinoless double-beta decay experiment SNO+”,
2011
Cited alongside, same era.
M. Yeh et al, “A new water-based liquid scintillator and potential applications”,
2011
Cited alongside, same era.
H. M. O’Keeffe, E. O’Sullivan, and M. C. Chen, “Scintillation decay time and pulse shape discrimination in oxygenated and deoxygenated solutions of linear alkylbenzene for the SNO+ experiment”,
2011
Cited alongside, same era.
B. von Krosigk, L. Neumann, R. Nolte, S. Röttger, and K. Zuber, “Measurement of the proton light response of various LAB based scintillators and its implication for supernova neutrino detection via neutrino-proton scattering”,
2013
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SNO Collaboration, B. Aharmim et al., “Combined analysis of all three phases of solar neutrino data from the Sudbury Neutrino Observatory”,
2013
Later among the works it cites.
J. Barea, J. Kotila, and F. Iachello, “Nuclear matrix elements for double-
2013
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2013
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2013
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T. Lund and J. P. Kneller, “Combining collective, MSW, and turbulence effects in supernova neutrino flavor evolution”,
2013
Later among the works it cites.
S. Grullon, “Light yield and scintillation decay time constants of Te-loaded liquid scintillator for the SNO+ experiment”,
2014
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A. Renshaw, “Solar neutrino results from Super-Kamiokande”, arXiv:1403.4575 [hep-ex], 2014
2014
Later among the works it cites.
Borexino Collaboration, G. Bellini et al., “Neutrinos from the primary proton-proton fusion process in the Sun”,
2014
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Daya Bay Collaboration, F. P. An et al., “Spectral measurement of electron antineutrino oscillation amplitude and frequency at Daya Bay”,
2014
Later among the works it cites.
X. Jing, H. Ming-Yang, H. Li-Jun, G. Xin-Heng, and Y. Bing-Lin, “Detection of Supernova neutrinos on the Earth for large
2014
Later among the works it cites.
2014
Later among the works it cites.
B.von Krosigk, “Measurement of proton and
2015
Closest in time.
R. Ford for the SNO+ Collaboration, “A scintillator purification plant and fluid handling system for SNO+”,
2015
Closest in time.
S. Hans, et al., “Purification of telluric acid for SNO+ neutrinoless double-beta decay search”,
2015
Closest in time.
R. Alves et al., “The calibration system for the photomultiplier array of the SNO+ experiment”,
2015
Closest in time.
V. Lozza, and J. Petzoldt, “Cosmogenic activation of a natural tellurium target”,
2015
Closest in time.
E. Arushanova, “Pileup background rejection in SNO+ experiment”, Talk at IoP meeting, Manchester, April 2015
2015
Closest in time.
2015
Closest in time.
J. Hyvärinen and J. Suhonen, “Nuclear matrix elements for 0
2015
Closest in time.
P. W. Graham, et al., “Experimental searches for the axion and axion-like particles’,
2015
Closest in time.