Muon imaging technology is an innovative imaging technique that can be applied in volcano imaging, heavy nuclear material detection, and archaeological research. The Micromegas detector is a promising choice for muon imaging due to its high spatial resolution and large area. However, the large number of readout channels poses a challenge for electronics. In this paper, a compact front-end electronics (FEE) for reading Micromegas detectors is presented. The electronics use the commercial current-to-digital readout chip, ADAS1128, which integrates 128 current amplifiers for multi-channel charge measurement. After verifying the basic performance of the electronics, the energy resolution was obtained with a radioactive source. Furthermore, a muon imaging system prototype was set up and its spatial resolution was evaluated in a test with cosmic ray muons. The system prototype can reconstruct the boundaries of sufficiently massive objects with a size of 2 cm in a scattering imaging test.
@article{arxiv.2405.12454,
title = {A Compact Readout Electronics Based on Current Amplifier for Micromegas Detector in Muon Imaging},
author = {Ting Wang and Yu Wang and Zhihang Yao and Yulin Liu and Changqing Feng and Zhiyong Zhang and Shubin Liu},
journal= {arXiv preprint arXiv:2405.12454},
year = {2024}
}