A compact imaging system with a CdTe double-sided strip detector for non-destructive analysis using negative muonic X-rays
Miho Katsuragawa, Motonobu Tampo, Koji Hamada, Atsushi Harayama,, Yasuhiro Miyake, Sayuri Oshita, Goro Sato, Tadayuki Takahashi, Shin'ichiro, Takeda, Shin Watanabe, Goro Yabu

TL;DR
This paper presents a compact imaging system using a CdTe double-sided strip detector for non-destructive elemental analysis with negative muonic X-rays, enabling 3D imaging of element distribution at different depths.
Contribution
The development of a prototype imaging system combining CdTe-DSD and a pinhole collimator for 3D elemental analysis using muonic X-rays.
Findings
Successfully reconstructed images of B, N, and F at various depths.
Demonstrated 3D imaging capability with negative muonic X-rays.
Achieved high energy and spatial resolution in a compact system.
Abstract
A CdTe double-sided strip detector (CdTe-DSD) is an ideal device for imaging and spectroscopic measure- ments in the hard X-ray range above 10 keV. Recent development enables us to realize an imager with a detection area of ~10 cm. An energy resolution of 1-2 keV (FWHM) and a position resolution of a few hundred {\mu}m are available from the detector. This type of imager has been long awaited for non-destructive elemental analysis, especially by using negative muons, because energies of characteristic X-rays from muonic atoms are about 200 time higher than those from normal atoms. With the method that uses negative muons, hard X-ray information gives the spatial distribution of elements in samples at a certain depth defined by the initial momentum of the muon beam. In order to study three-dimensional imaging capability of the method, we have developed a compact imaging system…
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