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An Experimental feasibility study of a 4$$pi$$ gamma-ray imager using detector response patterns

Kitayama, Yoshiharu  ; Nogami, Mitsuhiro*; Hitomi, Keitaro*

We constructed a gamma-ray imager that estimates the distribution of gamma-ray sources based on the response patterns of multiple gamma-ray detectors randomly positioned in three-dimensional space. The Coded Cube Camera for Gamma-ray (C3G), comprising eight GAGG (Ce) scintillator and eighteen lead cubes is housed in a cubical casing with an 86 mm edge length and weighs approximately 600 g. Results of the 4$$pi$$ imaging experiment confirmed the feasibility of imaging a 10 MBq $$^{137}$$Cs source located 3 m away with an angular uncertainty of 5$$^{circ}$$ within a 10 min measurement. C3G operates with only eight channels, instead of the hundreds needed by a typical imager, offering a simplified circuit and reconstruction algorithm, thereby achieving a cost-effective and reliable system. With its compact and lightweight design, 4$$pi$$ field of view, and high angular uncertainty, this technology is expected to find extensive applications in astronomy, medicine, nuclear security, and decommissioning projects.

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Category:Physics, Applied

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