Large-scale detector testing for the GAPS Si(Li) Tracker
arXiv:2305.00283 · doi:10.1109/TNS.2023.3291235
Abstract
Lithium-drifted silicon [Si(Li)] has been used for decades as an ionizing radiation detector in nuclear, particle, and astrophysical experiments, though such detectors have frequently been limited to small sizes (few cm) and cryogenic operating temperatures. The 10-cm-diameter Si(Li) detectors developed for the General Antiparticle Spectrometer (GAPS) balloon-borne dark matter experiment are novel particularly for their requirements of low cost, large sensitive area (~10 m for the full 1440-detector array), high temperatures (near -40C), and energy resolution below 4 keV FWHM for 20--100-keV x-rays. Previous works have discussed the manufacturing, passivation, and small-scale testing of prototype GAPS Si(Li) detectors. Here we show for the first time the results from detailed characterization of over 1100 flight detectors, illustrating the consistent intrinsic low-noise performance of a large sample of GAPS detectors. This work demonstrates the feasibility of large-area and low-cost Si(Li) detector arrays for next-generation astrophysics and nuclear physics applications.
Updated to version accepted in IEEE Trans Nucl Sci. Minor changes to text, fixed plotting error on Fig. 5. Conclusions unchanged
References in corpus (12)
- An upper limit on electron antineutrino mass from Troitsk experiment
- Antideuteron Sensitivity for the GAPS Experiment
- Cosmic-ray Antinuclei as Messengers of New Physics: Status and Outlook for the New Decade
- Search for solar axions produced by Compton process and bremsstrahlung using axioelectric effect
- Potential for Precision Measurement of Low-Energy Antiprotons with GAPS for Dark Matter and Primordial Black Hole Physics
- Fabrication of low-cost, large-area prototype Si(Li) detectors for the GAPS experiment
- Developing a mass-production model of large-area Si(Li) detectors with high operating temperatures
- Cosmic antihelium-3 nuclei sensitivity of the GAPS experiment
- Large-area Si(Li) detectors for X-ray spectrometry and particle tracking in the GAPS experiment
- Passivation of Si(Li) detectors operated above cryogenic temperatures for space-based applications
- Sensitivity of the GAPS Experiment to Low-energy Cosmic-ray Antiprotons
- Statistical investigation of the large-area Si(Li) detectors mass-produced for the GAPS experiment