A light injection system using LEDs and optical fibres was designed for the calibration and monitoring of the photomultiplier array of the SNO+ experiment at SNOLAB. Large volume, non-segmented, low-background detectors for rare event physics, such as the multi-purpose SNO+ experiment, need a calibration system that allow an accurate and regular measurement of the performance parameters of their photomultiplier arrays, while minimising the risk of radioactivity ingress. The design implemented for SNO+ uses a set of optical fibres to inject light pulses from external LEDs into the detector. The design, fabrication and installation of this light injection system, as well as the first commissioning tests, are described in this paper. Monte Car...
SNO+ is a kilotonne-scale, liquid scintillator-based neutrino detector housed in the underground fa...
The Sudbury Neutrino Observatory (SNO) is a solar neutrino experiment designed to search for neutrin...
SNO+ is a liquid scintillator experiment designed to study a wide range of neutrino-related...
A light injection system using LEDs and optical fibres was designed for the calibration and monitori...
A new external LED/fiber light injection calibration system was designed for the calibration and mon...
ABSTRACT: A light injection system using LEDs and optical fibres was designed for the calibration an...
The main goal of the SNO+ experiment is to perform a low-background and high-isotope-mass search for...
We report on the design and construction of a LED-based fiber calibration system for large liquid ar...
A description is given of the light-injection calibration system that has been developed for the MIN...
The SNO+ experiment is primarily looking for neutrinoless double-beta decay, an unobserved, lepton n...
SNO+ is a neutrino physics experiment located in Sudbury, Canada, that will search for the neutrinol...
Accepted by Nuclear Inst. and Methods in Physics Research, A NIMAA calibration method for telescope ...
AbstractThis paper presents several versions of the calibration and monitoring system for the scinti...
SNO+ is a liquid scintillator based neutrino experiment located 2039 m underground in VALE's Creight...
A telescope calibration method for type Ia supernovae photometry is proposed. It is based on the dir...
SNO+ is a kilotonne-scale, liquid scintillator-based neutrino detector housed in the underground fa...
The Sudbury Neutrino Observatory (SNO) is a solar neutrino experiment designed to search for neutrin...
SNO+ is a liquid scintillator experiment designed to study a wide range of neutrino-related...
A light injection system using LEDs and optical fibres was designed for the calibration and monitori...
A new external LED/fiber light injection calibration system was designed for the calibration and mon...
ABSTRACT: A light injection system using LEDs and optical fibres was designed for the calibration an...
The main goal of the SNO+ experiment is to perform a low-background and high-isotope-mass search for...
We report on the design and construction of a LED-based fiber calibration system for large liquid ar...
A description is given of the light-injection calibration system that has been developed for the MIN...
The SNO+ experiment is primarily looking for neutrinoless double-beta decay, an unobserved, lepton n...
SNO+ is a neutrino physics experiment located in Sudbury, Canada, that will search for the neutrinol...
Accepted by Nuclear Inst. and Methods in Physics Research, A NIMAA calibration method for telescope ...
AbstractThis paper presents several versions of the calibration and monitoring system for the scinti...
SNO+ is a liquid scintillator based neutrino experiment located 2039 m underground in VALE's Creight...
A telescope calibration method for type Ia supernovae photometry is proposed. It is based on the dir...
SNO+ is a kilotonne-scale, liquid scintillator-based neutrino detector housed in the underground fa...
The Sudbury Neutrino Observatory (SNO) is a solar neutrino experiment designed to search for neutrin...
SNO+ is a liquid scintillator experiment designed to study a wide range of neutrino-related...