Unified framework for precise background modeling to enhance rare event detection at the Kuo-Sheng nuclear reactor laboratory
arXiv:2510.05868 · doi:10.1088/1748-0221/21/05/P05016
Abstract
A comprehensive GEANT4 simulation framework was developed to model the background of the TEXONO experiment, including contributions from radioactive isotopes in detector components and the surrounding environment. The HPGe detector front-end electronics (pre-amplifier) were modeled with trace amounts of naturally occurring radionuclides 238U, 232Th, and 235U from manufacturing materials. Results show that the 238U and 232Th decay chains dominate the background below 400 keV, each contributing O(1) counts kg^-1 keV^-1 day^-1. Trace impurities were also introduced into the anti-Compton veto (ACV) detectors to represent realistic materials: 40K in the NaI(Tl) crystal and 137Cs in the CsI(Tl) detector. Simulations identified measurable background contributions from both isotopes, with the residual spectrum dominated by 40K gamma-rays and smaller contributions from 137Cs. The 40K background rate is about 0.1 counts kg^-1 keV^-1 day^-1, nearly 10 times larger than that from 137Cs below 400 keV. Environmental radioactivity was modeled using 60Co, 54Mn, and 135Xe distributed in the air gap between the copper end-cap and the NaI(Tl) ACV detector, representing airborne and surface contamination. These sources contribute minor background components below 100 keV, at levels of about 10^-2, 10^-2, and 0.1 counts kg^-1 keV^-1 day^-1 for 135Xe, 54Mn, and 60Co, respectively. Comparison of simulated and measured spectra shows good overall agreement, with only minor deviations at specific gamma-lines, validating the background model and demonstrating the robustness of the simulation framework for detector and shielding design.
28 pages, 12 figures
References in corpus (25)
- Dark Matter Search Results from a One TonneYear Exposure of XENON1T
- Observation of Coherent Elastic Neutrino-Nucleus Scattering
- CoGeNT: A Search for Low-Mass Dark Matter using p-type Point Contact Germanium Detectors
- Search of Neutrino Magnetic Moments with a High-Purity Germanium Detector at the Kuo-Sheng Nuclear Power Station
- Sterile Neutrinos
- Systematic study of trace radioactive impurities in candidate construction materials for EXO-200
- Limits on Light Weakly Interacting Massive Particles from the First 102.8 kg day Data of the CDEX-10 Experiment
- Probing Majorana neutrinos with double- decay
- Characterization and Performance of Germanium Detectors with sub-keV Sensitivities for Neutrino and Dark Matter Experiments
- Research Program towards Observation of Neutrino-Nucleus Coherent Scattering
- Search of Axions from a Nuclear Power Reactor with a High-Purity Germanium Detector
- Direct observation of coherent elastic antineutrino-nucleus scattering
- Differentiation of Bulk and Surface Events in p-type Point-Contact Germanium Detectors for Light WIMP Searches
- Constraints on millicharged particles with low threshold germanium detectors at Kuo-Sheng Reactor Neutrino Laboratory
- Bulk and Surface Event Identification in p-type Germanium Detectors
- New Limits on Coherent Neutrino Nucleus Elastic Scattering Cross Section at the Kuo-Sheng Reactor Neutrino Laboratory
- Characterization and modeling of a low background HPGe detector
- Highlights of the TEXONO Research Program on Neutrino and Astroparticle Physics
- The first result on 76Ge neutrinoless double beta decay from CDEX-1 experiment
- The Exposure-Background Duality in the Searches of Neutrinoless Double Beta Decay
- Constraints on Bosonic Dark Matter with Low Threshold Germanium Detector at Kuo-Sheng Reactor Neutrino Laboratory
- Neutron background measurements with a hybrid neutron detector at the Kuo-Sheng Reactor Neutrino Laboratory
- Projections of Discovery Potentials from Expected Background
- Bulk-Surface Event Discrimination in Point Contact Germanium Detectors at Near-Threshold Energies with Shape-Matching Pulse-Shape Methods
- Dark Matter Annual Modulation Analysis with Combined Nuclear and Electron Recoil Channels