...
首页> 外文期刊>Nuclear Science, IEEE Transactions on >The Muon Portal Double Tracker for the Inspection of Travelling Containers
【24h】

The Muon Portal Double Tracker for the Inspection of Travelling Containers

机译:用于旅行集装箱检查的Muon Portal双跟踪器

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The Muon Portal Project has as its goal the design and construction of a real-size working detector prototype in scale 1:1, to inspect the content of travelling containers by means of the secondary cosmic-ray muon radiation and to recognize high-Z hidden materials (i.e. U, Pu). The tomographic image is obtained by reconstructing the input and output trajectories of each muon when it crosses the container and, consequently, the scattering angle, making use of two trackers placed above and below the container. The scan is performed without adding any external radiation, in a reasonable time (few minutes) and with a good spatial and angular resolution. The detector consists of 8 planes each segmented in 6 identical modules. Each module is made of scintillating strips with two WaveLength Shifting fibers (WLS) inside, coupled to Silicon photomultipliers. The customized read-out electronics employs programmable boards. Thanks to a smart read-out system, the number of output channels is reduced by a factor 10. The signals from the front-end modules are sent to the read-out boards, in order to convert analog signals to digital ones, by comparison with a threshold. The data are pre-analyzed and stored into a data acquisition PC. After an intense measurement and simulation campaign to carefully characterize the detector components, the first detection modules () have been already built. In this paper the detector architecture, particularly focusing on the used electronics and the main preliminary results will be presented.
机译:Muon Portal项目的目标是设计和建造比例为1:1的实际大小的工作探测器原型,以通过二次宇宙射线μ子射线辐射检查行进中的容器的内容并识别高Z隐藏材料(即U,Pu)。层析图像是通过使用两个放置在容器上方和下方的跟踪器来重构每个介子在穿过容器时的输入和输出轨迹,从而散射角度来获得的。在合理的时间(几分钟)内且不增加外部辐射的情况下执行扫描,并具有良好的空间和角度分辨率。探测器由8个平面组成,每个平面分为6个相同的模块。每个模块由闪烁带制成,内部有两条WaveLength Shifting光纤(WLS),并与硅光电倍增管相连。定制的读取电子设备采用可编程板。得益于智能读出系统,输出通道的数量减少了10倍。来自前端模块的信号被发送到读出板,以便通过比较将模拟信号转换为数字信号。有一个阈值。数据经过预分析并存储到数据采集PC中。经过认真的测量和模拟活动以仔细表征检测器组件,已经建立了第一个检测模块()。在本文中,将介绍检测器架构,特别是针对所使用的电子设备和主要的初步结果。

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号