English

Improvement of radon detector performance by using a large-sized PIN-photodiode

Instrumentation and Detectors 2021-12-14 v1 High Energy Physics - Experiment Nuclear Experiment

Abstract

Radioactive noble gas radon (222Rn\mathrm{^{222}Rn}) is one of the major background sources below the MeV region in rare event search experiments. To precisely measure radon concentration in purified gases, a radon detector with an electrostatic collection method is widely used. In this paper, we discussed the improvements of a radon detector by installing a new PIN-photodiode (28×2828\times28 mm\mathrm{mm}) whose surface area is 2.52.5 times larger than that used previously (18×1818\times18 mm\mathrm{mm}). We evaluated the detector's performance by serially connecting two radon detectors equipped with two types of PIN-photodiodes. As a result of the calibrations, we found an improvement of (3.8±2.4)%(3.8\pm2.4)\% in the detection efficiencies below 1.01.0 g/m3\mathrm{g/m^{3}}, while a 1010-20%20\% improvement occurred above this level. The intrinsic background of the detector equipped with the large PIN-photodiode was measured as 0.240.05+0.090.24^{+0.09}_{-0.05} mBq/m3\mathrm{mBq/m^{3}}. This background level is consistent with the radon detector with the small PIN-photodiode, although we installed the large one. This improvement is useful for applications in radon emanation measurements from a material, which also emits water from its surface.

Keywords

Cite

@article{arxiv.2112.06614,
  title  = {Improvement of radon detector performance by using a large-sized PIN-photodiode},
  author = {K. Okamoto and Y. Nakano and G. Pronost and H. Sekiya and S. Tasaka and Y. Takeuchi and M. Nakahata},
  journal= {arXiv preprint arXiv:2112.06614},
  year   = {2021}
}

Comments

30 pages, 12 figures, 4 tables