Theia: A multi-purpose water-based liquid scintillator detector
arXiv:1809.05987
Abstract
Recent developments in the field of liquid scintillator chemistry and fast-timing photosensors paved the way for a new generation of large-scale detectors capable of tackling a broad range of physics issues. Water-based Liquid Scintillator is a novel detection medium that combines the advantages of pure water, including low attenuation, accurate direction reconstruction, and low cost, and those of liquid scintillator, including high light yield and low-threshold detection. When coupled with high efficiency, fast-timing photosensors, such as Large Area Picosecond PhotoDetectors, Water-based Liquid Scintillator exhibits an immense potential for neutrino physics and BSM searches. Theia is a 50-kiloton multi-purpose neutrino detector that aims to jointly deploy these two technologies in order to fulfill its physics program objectives, including the determination of the neutrino mass hierarchy and the CP violation phase in the leptonic sector, the detection of solar, reactor, and supernova neutrinos, and the search for neutrinoless double beta decay and proton decay.
Talk presented at CIPANP2018. 8 pages, LaTeX, 5 figures
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- A Brief Technical History of the Large-Area Picosecond Photodetector (LAPPD) Collaboration
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Cited by in corpus (5)
- Performance of Large Area Picosecond Photo-Detectors (LAPPD)
- A complete optical model for liquid-scintillator detectors
- Flavor ratios of astrophysical neutrinos interacting with stochastic gravitational waves having arbitrary spectra
- Energy and Flavor Discrimination Using Precision Time Structure in On-Axis Neutrino Beams
- Modeling of a MeV-scale Particle Detector Based on Organic Liquid Scintillator