Cosmogenic production of tritium in dark matter detectors
arXiv:1706.05818 · doi:10.1016/j.astropartphys.2017.11.004
Abstract
The direct detection of dark matter particles requires ultra-low background conditions at energies below a few tens of keV. Radioactive isotopes are produced via cosmogenic activation in detectors and other materials and those isotopes constitute a background source which has to be under control. In particular, tritium is specially relevant due to its decay properties (very low endpoint energy and long half-life) when induced in the detector medium, and because it can be generated in any material as a spallation product. Quantification of cosmogenic production of tritium is not straightforward, neither experimentally nor by calculations. In this work, a method for the calculation of production rates at sea level has been developed and applied to some of the materials typically used as targets in dark matter detectors (germanium, sodium iodide, argon and neon); it is based on a selected description of tritium production cross sections over the entire energy range of cosmic nucleons. Results have been compared to available data in the literature, either based on other calculations or from measurements. The obtained tritium production rates, ranging from a few tens to a few hundreds of nuclei per kg and per day at sea level, point to a significant contribution to the background in dark matter experiments, requiring the application of specific protocols for target material purification, material storing underground and limiting the time the detector is on surface during the building process in order to minimize the exposure to the most dangerous cosmic ray components.
Final version as published
References in corpus (8)
- The DAMA/LIBRA apparatus
- Radiogenic and Muon-Induced Backgrounds in the LUX Dark Matter Detector
- ACTIVIA: Calculation of Isotope Production Cross-sections and Yields
- Cosmogenic radionuclide production in NaI(Tl) crystals
- Cosmogenic activation of materials
- Excitation functions of proton-induced reactions on natural Nd in the 10-30 MeV energy range, and production of radionuclides relevant for double-β decay
- Cosmogenic activation of a natural tellurium target
- Excitation functions of proton-induced reactions on natural Nd and production of radionuclides relevant for double beta decay: Completing measurement in 5-35 MeV energy range
Cited by in corpus (15)
- Three-year annual modulation search with COSINE-100
- Cosmogenic activation of materials
- Sensitivity projections for a dual-phase argon TPC optimized for light dark matter searches through the ionization channel
- Growth of Ultra-high Purity NaI(Tl) Crystal for Dark Matter Searches
- Large-size sub-keV sensitive germanium detectors for the CONUS experiment
- High sensitivity characterization of an ultra-high purity NaI(Tl) crystal scintillator with the SABRE proof-of-principle detector
- Full background decomposition of the CONUS experiment
- Fuelling the search for light dark matter-electron scattering with spherical proportional counters
- Cosmogenic activation in double beta decay experiments
- Simulation and background characterisation of the SABRE South experiment
- Study of cosmogenic activation above ground for the DarkSide-20k experiment
- Cosmogenic activation of sodium iodide
- Testing the Gallium Anomaly
- Background model of the ANAIS-112 dark matter experiment
- Study of cosmogenic activation above ground of Ar for DarkSide-20k