There is an important and growing class of elementary particle detectors which are characterized by a large sensitive volume (thousands of tonnes), very low radioactive backgrounds, and rely on the emission of light for particle detection. Water Cherenkov detectors come into this category; they have a large mass of water as the sensitive medium. Particles are detected when they interact with the water and produce Cherenkov light, so detection efficiency relies on having a huge light sensitive area at the periphery of the detector. The most cost-effective way of achieving this is by placing light concentrators on large photomultiplier tubes (PMTs). This paper describes the work carried out on light concentrators for the PMTs in the Sudbury N...
The Sudbury Neutrino Observatory (SNO) is the first heavy water Cerenkov solar neutrino detector. 10...
Hyper-Kamiokande (Hyper-K) is the next generation of large water Cherenkov neutrino detector with a ...
A deep-sea Neutrino Telescope of at least 1 km(3) size (KM3NeT) is being designed to search for high...
There is an important and growing class of elementary particle detectors which are characterized by ...
There is great interest within the nonproliferation community to establish remote monitoring of nucl...
International audienceThe experimental efforts characterizing the era of precision neutrino physics ...
The concept of a small, single-layer water Cherenkov detector, with three photomultiplier tubes (PMT...
We describe a 125 m diameter spherical detector containing 1 Mt of water, capable of high rate obser...
The Sudbury Neutrino Observatory (SNO) is a solar neutrino experiment designed to search for neutrin...
Cosmic ray detectors use air as a radiator for luminescence. In water and ice, Cherenkov light is th...
A method of analyzing solar neutrino measurements using water-based Cherenkov detectors is presented...
Large-volume water-Cherenkov neutrino detectors are a light-starved environment, as each interaction...
Cherenkov detectors employ various methods to maximize light collection at the photomultiplier tubes...
The ANTARES Collaboration proposes to construct a large area water Cherenkov detector in the deep Me...
The Sudbury Neutrino Observatory is a Cerenkov neutrino detector that uses 1000 tonnes of heavy wate...
The Sudbury Neutrino Observatory (SNO) is the first heavy water Cerenkov solar neutrino detector. 10...
Hyper-Kamiokande (Hyper-K) is the next generation of large water Cherenkov neutrino detector with a ...
A deep-sea Neutrino Telescope of at least 1 km(3) size (KM3NeT) is being designed to search for high...
There is an important and growing class of elementary particle detectors which are characterized by ...
There is great interest within the nonproliferation community to establish remote monitoring of nucl...
International audienceThe experimental efforts characterizing the era of precision neutrino physics ...
The concept of a small, single-layer water Cherenkov detector, with three photomultiplier tubes (PMT...
We describe a 125 m diameter spherical detector containing 1 Mt of water, capable of high rate obser...
The Sudbury Neutrino Observatory (SNO) is a solar neutrino experiment designed to search for neutrin...
Cosmic ray detectors use air as a radiator for luminescence. In water and ice, Cherenkov light is th...
A method of analyzing solar neutrino measurements using water-based Cherenkov detectors is presented...
Large-volume water-Cherenkov neutrino detectors are a light-starved environment, as each interaction...
Cherenkov detectors employ various methods to maximize light collection at the photomultiplier tubes...
The ANTARES Collaboration proposes to construct a large area water Cherenkov detector in the deep Me...
The Sudbury Neutrino Observatory is a Cerenkov neutrino detector that uses 1000 tonnes of heavy wate...
The Sudbury Neutrino Observatory (SNO) is the first heavy water Cerenkov solar neutrino detector. 10...
Hyper-Kamiokande (Hyper-K) is the next generation of large water Cherenkov neutrino detector with a ...
A deep-sea Neutrino Telescope of at least 1 km(3) size (KM3NeT) is being designed to search for high...