The Rayleigh ratio measurement for SNO+ liquid scintillator and background studies of the internal ropes

As a successor of the Sudbury Neutrino Observatory, the SNO+ experiment is planned to start data taking in early 2013. Making use of the liquid scintillator, Linear Alkylbenzene (LAB), the SNO+ experiment aims to perform ux measurements of low energy solar neutrinos in one phase, and wait for neutri...

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Main Author: Asahi, SATOKO
Other Authors: Queen's University (Kingston, Ont.). Theses (Queen's University (Kingston, Ont.))
Language:en
en
Published: 2012
Subjects:
Online Access:http://hdl.handle.net/1974/7451
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spelling ndltd-LACETR-oai-collectionscanada.gc.ca-OKQ.1974-74512013-12-20T03:40:30ZThe Rayleigh ratio measurement for SNO+ liquid scintillator and background studies of the internal ropesAsahi, SATOKOSNO+PhysicsAs a successor of the Sudbury Neutrino Observatory, the SNO+ experiment is planned to start data taking in early 2013. Making use of the liquid scintillator, Linear Alkylbenzene (LAB), the SNO+ experiment aims to perform ux measurements of low energy solar neutrinos in one phase, and wait for neutrinoless double beta decay events in another phase where 44 kg of natural Neodymium would be added into LAB. The Rayleigh ratio of LAB was found to be 16.60 _ 3.14 _10 6 cm 1 at 546 nm using the relative measurement technique. The wavelength dependency of the Rayleigh scattering was also examined and compared with the theoretical prediction. A setup which is usable to measure the angular dependency of the Rayleigh scattering was built, and an isotropic behaviour of the scattering was tested. The _ and backgrounds, due to the internal calibration ropes situated in the scintillator volume, were studied using the SNO+ Monte Carlo Package. Also, the amount of 210Pb originating from the internal calibration ropes due to the intrinsic contamination of 238U, Rn emanation and plated on the surface prior to the installation were assessed to examine if it is a tolerable level to achieve the target level of 13.4 background events per day.Thesis (Master, Physics, Engineering Physics and Astronomy) -- Queen's University, 2012-08-31 15:56:59.875Queen's University (Kingston, Ont.). Theses (Queen's University (Kingston, Ont.))2012-08-31 15:56:59.8752012-09-10T21:40:36Z2012-09-10T21:40:36Z2012-09-10Thesishttp://hdl.handle.net/1974/7451enenCanadian thesesThis publication is made available by the authority of the copyright owner solely for the purpose of private study and research and may not be copied or reproduced except as permitted by the copyright laws without written authority from the copyright owner.
collection NDLTD
language en
en
sources NDLTD
topic SNO+
Physics
spellingShingle SNO+
Physics
Asahi, SATOKO
The Rayleigh ratio measurement for SNO+ liquid scintillator and background studies of the internal ropes
description As a successor of the Sudbury Neutrino Observatory, the SNO+ experiment is planned to start data taking in early 2013. Making use of the liquid scintillator, Linear Alkylbenzene (LAB), the SNO+ experiment aims to perform ux measurements of low energy solar neutrinos in one phase, and wait for neutrinoless double beta decay events in another phase where 44 kg of natural Neodymium would be added into LAB. The Rayleigh ratio of LAB was found to be 16.60 _ 3.14 _10 6 cm 1 at 546 nm using the relative measurement technique. The wavelength dependency of the Rayleigh scattering was also examined and compared with the theoretical prediction. A setup which is usable to measure the angular dependency of the Rayleigh scattering was built, and an isotropic behaviour of the scattering was tested. The _ and backgrounds, due to the internal calibration ropes situated in the scintillator volume, were studied using the SNO+ Monte Carlo Package. Also, the amount of 210Pb originating from the internal calibration ropes due to the intrinsic contamination of 238U, Rn emanation and plated on the surface prior to the installation were assessed to examine if it is a tolerable level to achieve the target level of 13.4 background events per day. === Thesis (Master, Physics, Engineering Physics and Astronomy) -- Queen's University, 2012-08-31 15:56:59.875
author2 Queen's University (Kingston, Ont.). Theses (Queen's University (Kingston, Ont.))
author_facet Queen's University (Kingston, Ont.). Theses (Queen's University (Kingston, Ont.))
Asahi, SATOKO
author Asahi, SATOKO
author_sort Asahi, SATOKO
title The Rayleigh ratio measurement for SNO+ liquid scintillator and background studies of the internal ropes
title_short The Rayleigh ratio measurement for SNO+ liquid scintillator and background studies of the internal ropes
title_full The Rayleigh ratio measurement for SNO+ liquid scintillator and background studies of the internal ropes
title_fullStr The Rayleigh ratio measurement for SNO+ liquid scintillator and background studies of the internal ropes
title_full_unstemmed The Rayleigh ratio measurement for SNO+ liquid scintillator and background studies of the internal ropes
title_sort rayleigh ratio measurement for sno+ liquid scintillator and background studies of the internal ropes
publishDate 2012
url http://hdl.handle.net/1974/7451
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