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Development of an alpha- and beta-imaging detector using a thin-stilbene plate for radon-222 progeny measurements

Morishita, Yuki   

Radon-222 ($$^{222}$$Rn) is a naturally-occurring radioactive gas, and the measurement of this isotope and its progeny is of interest from the viewpoint of protection against internal exposure. We have developed a new alpha beta-imaging detector combined with a waveform digitizer capable of imaging alpha- and beta-particle locations simultaneously. This detector is used for $$^{222}$$Rn -progeny measurements. The thin-stilbene plate was optically coupled to a position-sensitive photomultiplier tube (PSPMT), and the analog signals from the PSPMT were transferred in parallel to the waveform digitizer. For 5.5-MeV alpha particles, the detection efficiency was 97.2% for 2$$pi$$ steradians, and the energy resolution was 21.6% full width at half maximum (FWHM). The imaging detector was able to discriminate between alpha and beta particles via the pulse-shape-discrimination (PSD) technique, as well as being capable of alpha- and beta-particle imaging. When measuring the $$^{222}$$Rn progeny, both $$^{214}$$Bi and $$^{214}$$Po are imaged simultaneously, and a correlation is found between the positions of $$^{214}$$Bi and $$^{214}$$Po. The developed detector will be useful as a $$^{222}$$Rn detector and in alpha-continuous-air monitoring for nuclear-fuel facilities.

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Category:Nuclear Science & Technology

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