期刊文献+
共找到5篇文章
< 1 >
每页显示 20 50 100
Hybrid model for muon tomography and quantitative analysis of image quality 被引量:1
1
作者 Si-Yuan Luo Yu-He Huang +6 位作者 Xuan-Tao Ji Lie He Wan-Cheng Xiao Feng-Jiao Luo Song Feng Min Xiao Xiao-Dong Wang 《Nuclear Science and Techniques》 SCIE EI CAS CSCD 2022年第7期1-13,共13页
Muon tomography is a novel method for the non-destructive imaging of materials based on muon rays,which are highly penetrating in natural background radiation.Currently,the most commonly used imaging methods include m... Muon tomography is a novel method for the non-destructive imaging of materials based on muon rays,which are highly penetrating in natural background radiation.Currently,the most commonly used imaging methods include muon radiography and muon tomography.A previously studied method known as coinciding muon trajectory density tomography,which utilizes muonic secondary particles,is proposed to image low and medium atomic number(Z)materials.However,scattering tomography is mostly used to image high-Z materials,and coinciding muon trajectory density tomography exhibits a hollow phenomenon in the imaging results owing to the self-absorption effect.To address the shortcomings of the individual imaging methods,hybrid model tomography combining scattering tomography and coinciding muon trajectory density tomography is proposed and verified.In addition,the peak signal-to-noise ratio was introduced to quantitatively analyze the image quality.Different imaging models were simulated using the Geant4 toolkit to confirm the advantages of this innovative method.The simulation results showed that hybrid model tomography can image centimeter-scale materials with low,medium,and high Z simultaneously.For high-Z materials with similar atomic numbers,this method can clearly distinguish those with apparent differences in density.According to the peak signal-to-noise ratio of the analysis,the reconstructed image quality of the new method was significantly higher than that of the individual imaging methods.This study provides a reliable approach to the compatibility of scattering tomography and coinciding muon trajectory density tomography. 展开更多
关键词 Monte Carlo simulation muon tomography Image reconstruction
下载PDF
A high-position-resolution trajectory detector system for cosmic ray muon tomography:Monte Carlo simulation 被引量:2
2
作者 Jiajia Zhai Haohui Tang +8 位作者 Xianchao Huang Shuangquan Liu Yingjie Wang Chong Li Xiuzuo Liang Yi Zhang Meichan Feng Zhiming Zhang Long Wei 《Radiation Detection Technology and Methods》 CSCD 2022年第2期244-253,共10页
Purpose The research focuses on the related designing and simulating the high-position-resolution trajectory detector system based on cosmic ray muon tomography.Methods The energy deposition of muon in the detector va... Purpose The research focuses on the related designing and simulating the high-position-resolution trajectory detector system based on cosmic ray muon tomography.Methods The energy deposition of muon in the detector varies with the length of the ionization path.Results The simulation of the submillimeter detector system was designed for muon imaging.The optimal position resolution of the detector reached 0.6 mm.Conclusions The entire research process includes the selection of analysis of parameters affecting system design,designing of two high-position-resolution detectors based on plastic scintillators,implementation of different imaging algorithms and image quality assessment based on different imaging models.It provides a solution based on high positional resolution plastic scintillator detectors for cosmic ray muon scattering imaging. 展开更多
关键词 Cosmic ray muon tomography Plastic scintillator Position resolution PoCA MLSD-EM
原文传递
A position resolution MRPC for muon tomography 被引量:1
3
作者 樊星明 王义 +5 位作者 王学武 曾智 曾鸣 赵自然 程建平 D.Gonzalez-Diaz 《Chinese Physics C》 SCIE CAS CSCD 2014年第4期50-54,共5页
Muon tomography is a promising method in the detection and imaging of high Z material. In general, considering the quality of track reconstruction in imaging, a detector of good position resolution, high efficiency an... Muon tomography is a promising method in the detection and imaging of high Z material. In general, considering the quality of track reconstruction in imaging, a detector of good position resolution, high efficiency and large area is required. This paper presents the design and study of a prototype of position sensitive MRPC with 0.15 mm narrow gas gap and 2.54 mm strip readout. Through a cosmic-ray experiment, the performance of MRPC module is carefully observed and each channel is calibrated. Through an X ray experiment with a narrow slit, the position resolution is studied. The results show that the time resolution of the module can reach 61ps and the spatial resolution can reach 0.36 mm. 展开更多
关键词 MRPC muon tomography position resolution
原文传递
Material discrimination using cosmic ray muon scattering tomography with an artificial neural network 被引量:1
4
作者 Weibo He Dingyue Chang +3 位作者 Rengang Shi Maobing Shuai Yingru Li Sa Xiao 《Radiation Detection Technology and Methods》 CSCD 2022年第2期254-261,共8页
Introduction Muon scattering tomography(MST)can be employed to scan cargo containers and vehicles for special nuclear materials by using cosmic muons.However,the flux of cosmic ray muons is relatively low for direct d... Introduction Muon scattering tomography(MST)can be employed to scan cargo containers and vehicles for special nuclear materials by using cosmic muons.However,the flux of cosmic ray muons is relatively low for direct detection.Thus,the detection has to be done in a short timescale with small numbers of muons to satisfy the demands of practical applications.Method In this paper,we propose an artificial neural network(ANN)algorithm for material discrimination using MST.The muon scattering angles were simulated using Geant4 to formulate the training set,and the muon scatter angles were measured by Micromegas detection system to create the test set.Results The ANN-based algorithm presented here ensures a discrimination accuracy of 98.0%between aluminum,copper and tungsten in a 5 min measurement of 4×4×4 cm^(3)blocks. 展开更多
关键词 muon scattering tomography Cargo container inspection Material discrimination Artificial neural network classifier
原文传递
Study of muon tomographic imaging for high-Z material detection with a Micromegas-based tracking system 被引量:2
5
作者 Cheng-Ming Liu Qun-Gang Wen +1 位作者 Zhi-Yong Zhang Guang-Shun Huang 《Radiation Detection Technology and Methods》 CSCD 2020年第3期263-268,共6页
Purpose To study the cosmic ray muon tomographic imaging of high-Z material with Micromegas-based tracking system.Method A high-spatial-resolution tracking system was set up with the micro-mesh gaseous structure(Micro... Purpose To study the cosmic ray muon tomographic imaging of high-Z material with Micromegas-based tracking system.Method A high-spatial-resolution tracking system was set up with the micro-mesh gaseous structure(Micromegas)detec-tors in order to study the muon tomographic imaging technique.Six layers of 90 mm×90 mm one-dimensional readout Micromegas were used to construct a tracking system.Result and conclusion The imaging test using some metallic bars was performed with cosmic ray muons.A two-dimensional imaging of the test object was presented with a newly proposed ratio algorithm.The result of this work shows that the ratio algorithm is well performed. 展开更多
关键词 muon tomography imaging Micromegas detector Ratio algorithm High spatial resolution
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部