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The Sudbury Neutrino Observatory (SNO) was a heavy water Cerenkov detector designed to solve the long-standing ``solar neutrino problem''; a discrepancy between the measured and predicted flux of electron-flavour solar neutrinos. SNO…

High Energy Physics - Experiment · Physics 2009-06-01 Ryan Martin

The feasibility of a next generation underground water Cherenkov detector is examined and a conceptual design (UNO) is presented. The design has a linear detector configuration with a total volume of 650 kton which is 13 times the total…

High Energy Physics - Experiment · Physics 2009-10-31 Chang Kee Jung

A large capacity purification plant and fluid handling system has been constructed for the SNO+ neutrino and double-beta decay experiment, located 6800 feet underground at SNOLAB, Canada. SNO+ is a refurbishment of the SNO detector to fill…

Instrumentation and Detectors · Physics 2019-08-14 Richard J. Ford

The Sudbury Neutrino Observatory uses 1000 tonnes of heavy water in an ultra-clean Cherenkov detector situated 2 km underground in Ontario, Canada to study neutrinos from the Sun and other astrophysical sources. The Charged Current (CC)…

High Energy Physics - Experiment · Physics 2019-08-14 A. B. McDonald

SNOLAB is one of the deepest underground laboratories in the world with an overburden of 2092 m. The SNO+ detector is designed to achieve several fundamental physics goals as a low-background experiment, particularly measuring the Earth's…

SNO+ is a large multipurpose experiment with the ultimate goal of searching for the neutrinoless double beta decay in $^{130}\mathrm{Te}$. After a commissioning phase with water as the target medium, during which acquired data allowed for…

High Energy Physics - Experiment · Physics 2024-03-31 A. S. Inácio , W. Parker , B. Tam

The SNO+ detector operated initially as a water Cherenkov detector. The implementation of a sealed covergas system midway through water data taking resulted in a significant reduction in the activity of $^{222}$Rn daughters in the detector…

High Energy Physics - Experiment · Physics 2024-12-24 SNO+ Collaboration , : , A. Allega , M. R. Anderson , S. Andringa , M. Askins , D. M. Asner , D. J. Auty , A. Bacon , F. Barão , N. Barros , R. Bayes , E. W. Beier , A. Bialek , S. D. Biller , E. Blucher , E. Caden , E. J. Callaghan , M. Chen , S. Cheng , B. Cleveland , D. Cookman , J. Corning , M. A. Cox , R. Dehghani , J. Deloye , M. M. Depatie , F. Di Lodovico , C. Dima , J. Dittmer , K. H. Dixon , M. S. Esmaeilian , E. Falk , N. Fatemighomi , R. Ford , A. Gaur , O. I. González-Reina , D. Gooding , C. Grant , J. Grove , S. Hall , A. L. Hallin , D. Hallman , W. J. Heintzelman , R. L. Helmer , C. Hewitt , B. Hreljac , J. Hu , P. Huang , R. Hunt-Stokes , S. M. A. Hussain , A. S. Inácio , C. J. Jillings , S. Kaluzienski , T. Kaptanoglu , J. Kladnik , J. R. Klein , L. L. Kormos , B. Krar , C. Kraus , C. B. Krauss , T. Kroupová , C. Lake , L. Lebanowski , C. Lefebvre , V. Lozza , M. Luo , A. Maio , S. Manecki , J. Maneira , R. D. Martin , N. McCauley , A. B. McDonald , G. Milton , D. Morris , M. Mubasher , S. Naugle , L. J. Nolan , H. M. O'Keeffe , G. D. Orebi Gann , J. Page , K. Paleshi , W. Parker , J. Paton , S. J. M. Peeters , L. Pickard , B. Quenallata , P. Ravi , A. Reichold , S. Riccetto , J. Rose , R. Rosero , I. Semenec , J. Simms , P. Skensved , M. Smiley , R. Svoboda , B. Tam , J. Tseng , E. Vázquez-Jáuregui , C. J. Virtue , M. Ward , J. R. Wilson , J. D. Wilson , A. Wright , S. Yang , M. Yeh , Z. Ye , S. Yu , Y. Zhang , K. Zuber , A. Zummo

The SNO+ experiment is a large multi-purpose neutrino detector, currently filled with liquid scintillator. For the first time in a single experiment, SNO+ is able to measure the neutrino oscillation parameters $\theta_{12}$ and $\Delta…

High Energy Physics - Experiment · Physics 2024-03-29 Daniel Cookman

Insofar as the detection of anti-neutrinos from nuclear reactors is concerned, the SNO+ detector -- a 1 kilo-tonne liquid scintillator detector that inherits the experimental infrastructure from the recently finished SNO experiment -- is…

High Energy Physics - Phenomenology · Physics 2008-10-14 Eugene Guillian

Neutrinos carry most of the energy released by a core-collapse supernova. SNOLAB has two neutrino-capable detectors, SNO+ and HALO, that have complementary neutrino flavour sensitivities. SNOLAB is also host to existing facilities, or plans…

High Energy Physics - Experiment · Physics 2025-05-19 Erica Caden , Stephen Sekula , Stanley Yen

Results are reported from a search for low-multiplicity neutrino bursts in the Sudbury Neutrino Observatory (SNO). Such bursts could indicate detection of a nearby core-collapse supernova explosion. The data were taken from Phase I…

High Energy Physics - Experiment · Physics 2012-08-27 SNO Collaboration

The SNO+ experiment, currently undergoing commissioning, will be a large scale liquid scintillator detector capable of studying a variety of physics topics, with the highest priority being a sensitive search for neutrinoless double beta…

Instrumentation and Detectors · Physics 2014-05-15 Steven Biller

The SNO+ detector, a new kiloton scale liquid scintillator detector capable of recording geoneutrino events, will define the strength of the Earth radiogenic heat. A detailed 3-D model of the regional crust, centered at SNO+ and based on…

In the heart of the Creighton Mine near Sudbury (Canada), the SNO+ detector is foreseen to observe almost in equal proportion electron antineutrinos produced by U and Th in the Earth and by nuclear reactors. SNO+ will be the first long…

Geophysics · Physics 2016-07-21 M Baldoncini , V Strati , S A Wipperfurth , G Fiorentini , F Mantovani , W F McDonough , B Ricci

Accurate measurement of the cosmogenic muon-induced neutron yield is crucial for constraining a significant background in a wide range of low-energy physics searches. Although previous underground experiments have measured this yield across…

High Energy Physics - Experiment · Physics 2026-04-01 SNO+ Collaboration , : , M. Abreu , A. Allega , M. R. Anderson , S. Andringa , D. M. Asner , D. J. Auty , A. Bacon , T. Baltazar , F. Barão , N. Barros , R. Bayes , C. Baylis , E. W. Beier , A. Bialek , S. D. Biller , E. Caden , E. J. Callaghan , M. Chen , S. Cheng , B. Cleveland , D. Cookman , J. Corning , S. DeGraw , R. Dehghani , J. Deloye , M. M. Depatie , C. Dima , J. Dittmer , K. H. Dixon , M. S. Esmaeilian , E. Falk , N. Fatemighomi , R. Ford , S. Gadamsetty , A. Gaur , D. Gooding , C. Grant , J. Grove , S. Hall , A. L. Hallin , D. Hallman , M. R. Hebert , W. J. Heintzelman , R. L. Helmer , C. Hewitt , B. Hreljac , P. Huang , R. Hunt-Stokes , A. S. Inácio , C. J. Jillings , S. Kaluzienski , T. Kaptanoglu , J. Kladnik , J. R. Klein , L. L. Kormos , B. Krar , C. Kraus , C. B. Krauss , T. Kroupová , C. Lake , L. Lebanowski , C. Lefebvre , B. Liggins , V. Lozza , M. Luo , S. Maguire , A. Maio , S. Manecki , J. Maneira , R. D. Martin , N. McCauley , A. B. McDonald , G. Milton , D. Morris , M. Mubasher , S. Naugle , L. J. Nolan , H. M. O'Keeffe , G. D. Orebi Gann , S. Ouyang , J. Page , S. Pal , K. Paleshi , W. Parker , L. J. Pickard , R. C. Pitelka , B. Quenallata , P. Ravi , A. Reichold , S. Riccetto , J. Rose , R. Rosero , J. Shen , J. Simms , P. Skensved , M. Smiley , M. I. Stringer , R. Tafirout , B. Tam , J. Tseng , E. Vázquez-Jáuregui , C. J. Virtue , F. Wang , M. Ward , J. R. Wilson , J. D. Wilson , A. Wright , S. Yang , Z. Ye , M. Yeh , S. Yu , Y. Zhang , K. Zuber

This paper reports results from a search for single and multi-nucleon disappearance from the $^{16}$O nucleus in water within the \snoplus{} detector using all of the available data. These so-called "invisible" decays do not directly…

High Energy Physics - Experiment · Physics 2022-06-29 SNO+ Collaboration , : , A. Allega , M. R. Anderson , S. Andringa , M. Askins , D. J. Auty , A. Bacon , N. Barros , F. Barão , R. Bayes , E. W. Beier , T. S. Bezerra , A. Bialek , S. D. Biller , E. Blucher , E. Caden , E. J. Callaghan , S. Cheng , M. Chen , O. Chkvorets , B. Cleveland , D. Cookman , J. Corning , M. A. Cox , R. Dehghani , C. Deluce , M. M. Depatie , J. Dittmer , K. H. Dixon , F. Di Lodovico , E. Falk , N. Fatemighomi , R. Ford , K. Frankiewicz , A. Gaur , O. I. González-Reina , D. Gooding , C. Grant , J. Grove , A. L. Hallin , D. Hallman , J. Hartnell , W. J. Heintzelman , R. L. Helmer , J. Hu , R. Hunt-Stokes , S. M. A. Hussain , A. S. Inácio , C. J. Jillings , T. Kaptanoglu , P. Khaghani , H. Khan , J. R. Klein , L. L. Kormos , B. Krar , C. Kraus , C. B. Krauss , T. Kroupová , I. Lam , B. J. Land , I. Lawson , L. Lebanowski , J. Lee , C. Lefebvre , J. Lidgard , Y. H. Lin , V. Lozza , M. Luo , A. Maio , S. Manecki , J. Maneira , R. D. Martin , N. McCauley , A. B. McDonald , M. Meyer , C. Mills , I. Morton-Blake , S. Naugle , L. J. Nolan , H. M. O'Keeffe , G. D. Orebi Gann , J. Page , W. Parker , J. Paton , S. J. M. Peeters , L. Pickard , P. Ravi , A. Reichold , S. Riccetto , R. Richardson , M. Rigan , J. Rose , J. Rumleskie , I. Semenec , P. Skensved , M. Smiley , R. Svoboda , B. Tam , J. Tseng , E. Turner , S. Valder , J. G. C. Veinot , C. J. Virtue , E. Vázquez-Jáuregui , J. Wang , M. Ward , J. J. Weigand , J. D. Wilson , J. R. Wilson , A. Wright , J. P. Yanez , S. Yang , M. Yeh , S. Yu , T. Zhang , Y. Zhang , K. Zuber , A. Zummo

A first study of neutron tagging is conducted in Super--Kamiokande, a 50,000-ton water Cherenkov detector. The tagging efficiencies of thermal neutrons are evaluated in a 0.2 % GdCl$_{3}$-water solution and pure water. They are determined…

High Energy Physics - Experiment · Physics 2015-05-13 Kamiokande Collaboration , H. Watanabe , H. Zhang

The technique used at the Sudbury Neutrino Observatory (SNO) to measure the concentration of 222Rn in water is described. Water from the SNO detector is passed through a vacuum degasser (in the light water system) or a membrane contact…

Nuclear Experiment · Physics 2015-06-26 I. Blevis

This review paper provides a summary of the published results of the Sudbury Neutrino Observatory (SNO) experiment that was carried out by an international scientific collaboration with data collected during the period from 1999 to 2006. By…

Nuclear Experiment · Physics 2019-08-13 A. Bellerive , J. R. Klein , A. B. McDonald , A. J. Noble , A. W. P. Poon