Prospects of Scintillating Crystal Detector in Low-Energy Low-Background Experiments
arXiv:hep-ex/9910002 · doi:10.1016/S0927-6505(00)00108-0
Abstract
Scintillating crystal detector offers potential advantages in low-energy (keV-MeV range) low-background experiments for particle physics and astrophysics. The merits are discussed using CsI(Tl) crystal as illustrations. The various physics topics which can be pursued with this detector technology are summarized. A conceptual design for a generic detector is presented.
20 pages, 1 tables, 7 figures, submitted to Astroparticle Physics
References in corpus (3)
Cited by in corpus (13)
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- Intrinsic Radioactivity in a GSO Crystal and Limits on Double Beta Decay of Gd-160
- The Electronics and Data Acquisition Systems of a CsI(Tl) Scintillating Crystal Detector for Low Energy Neutrino Experiment
- Highlights of the TEXONO Research Program on Neutrino and Astroparticle Physics
- Measurement of the Intrinsic Radiopurity of Cs-137/U-235/U-238/Th-232 in CsI(Tl) Crystal Scintillators
- Sensitivities of Low Energy Reactor Neutrino Experiments
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- Nuclear Recoil Measurement in CsI(Tl) Crystal for Cold Dark Matter Detection
- Neutrino Magnetic Moments: Status and Prospects
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