DocumentCode
2547325
Title
A scalable digital pulse process module for the MRPC detector of muon tomography
Author
Xiaoguang Yue ; Ming Zeng ; Zhi Deng ; Zhi Zeng ; Xuewu Wang ; Jianping Cheng
Author_Institution
Key Lab. of Particle & Radiat. Imaging, Tsinghua Univ., Beijing, China
fYear
2012
fDate
Oct. 27 2012-Nov. 3 2012
Firstpage
862
Lastpage
864
Abstract
Muon tomography with cosmic ray muons is a novel technology for high-Z material detection, which requires largescale, high-efficiency, high spatial resolution detectors to track the muons. From previous studies, we conclude that the multigap resistive plate chamber (MRPC) will be an excellent and inexpensive choice for this application, which also offers the possibility of introducing energy information of muons by TOF measurement to image reconstruction of muon tomography owning to the inherent high time resolution of MRPC. To get enough spatial resolution, the dedicated electronics is required to be able to handle thousands of readout channels. To keep the flexibility of charge and time measurement for detector research purpose, a fast preamp with waveform sampling combined with the Digital Pulse Process (DPP) technology was chosen as the readout solution. At present, an 8-ch current sensitive preamp ASIC has been designed and implemented for the SDPP module, and the switched capacitor array (SCA) chip DRS4 designed by the PSI was chosen as the sampler of the SDPP.
Keywords
application specific integrated circuits; cosmic ray apparatus; particle detectors; switched capacitor filters; time of flight spectra; tomography; DPP technology; MRPC detector; TOF measurement; cosmic ray muons; current sensitive preamp ASIC; high-Z material detection; image reconstruction; multigap resistive plate chamber; muon tomography; readout channel; scalable digital pulse process module; switched capacitor array;
fLanguage
English
Publisher
ieee
Conference_Titel
Nuclear Science Symposium and Medical Imaging Conference (NSS/MIC), 2012 IEEE
Conference_Location
Anaheim, CA
ISSN
1082-3654
Print_ISBN
978-1-4673-2028-3
Type
conf
DOI
10.1109/NSSMIC.2012.6551227
Filename
6551227
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