首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >GEANT4 simulation of a scintillating-fibre tracker for the cosmic-ray muon tomography of legacy nuclear waste containers
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GEANT4 simulation of a scintillating-fibre tracker for the cosmic-ray muon tomography of legacy nuclear waste containers

机译:GEANT4模拟闪烁光纤跟踪器的遗留核废料容器的宇宙射线μ子层析成像

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摘要

Cosmic-ray muons are highly penetrative charged particles that are observed at the sea level with a flux of approximately one per square centimetre per minute. They interact with matter primarily through Coulomb scattering, which is exploited in the field of muon tomography to image shielded objects in a wide range of applications. In this paper, simulation studies are presented that assess the feasibility of a scintillating-fibre tracker system for use in the identification and characterisation of nuclear materials stored within industrial legacy waste containers. A system consisting of a pair of tracking modules above and a pair below the volume to be assayed is simulated within the GEANT4 framework using a range of potential fibre pitches and module separations. Each module comprises two orthogonal planes of fibres that allow the reconstruction of the initial and Coulomb-scattered muon trajectories. A likelihood-based image reconstruction algorithm has been developed that allows the container content to be determined with respect to the scattering density X, a parameter which is related to the atomic number Z of the scattering material. Images reconstructed from this simulation are presented for a range of anticipated scenarios that highlight the expected image resolution and the potential of this system for the identification of high-Z materials within a shielded, concrete-filled container. First results from a constructed prototype system are presented in comparison with those from a detailed simulation. Excellent agreement between experimental data and simulation is observed showing clear discrimination between the different materials assayed throughout.
机译:宇宙射线μ子是具有高渗透性的带电粒子,在海平面观察到的通量约为每平方厘米每分钟一个。它们主要通过库仑散射与物质相互作用,在μ子断层扫描领域已被广泛使用,以在各种应用中对被屏蔽的物体成像。在本文中,提出了模拟研究,评估了闪烁纤维跟踪器系统用于识别和表征工业遗留废物容器中存储的核材料的可行性。在GEANT4框架内,使用一系列潜在的光纤间距和模块间距,对由要分析的体积上方和下方的一对跟踪模块组成的系统进行了仿真。每个模块包括两个正交的纤维平面,可以重建初始的和库仑散射的μ子轨迹。已经开发了基于似然的图像重建算法,该算法允许相对于散射密度X来确定容器的内容物,该散射密度X与散射材料的原子序数Z有关。从该模拟中重建的图像针对一系列预期场景进行了介绍,这些场景突显了预期的图像分辨率以及该系统在屏蔽的混凝土填充容器内识别高Z材料的潜力。与详细模拟的结果相比较,介绍了构建的原型系统的第一个结果。观察到实验数据与模拟之间的极佳一致性,显示出在整个测试过程中不同材料之间的明显区别。

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    SUPA, School of Physics & Astronomy, University of Glasgow, Kelvin Building, University Avenue, Glasgow G12 8QQ, Scotland, UK;

    SUPA, School of Physics & Astronomy, University of Glasgow, Kelvin Building, University Avenue, Glasgow G12 8QQ, Scotland, UK;

    SUPA, School of Physics & Astronomy, University of Glasgow, Kelvin Building, University Avenue, Glasgow G12 8QQ, Scotland, UK;

    SUPA, School of Physics & Astronomy, University of Glasgow, Kelvin Building, University Avenue, Glasgow G12 8QQ, Scotland, UK;

    National Nuclear Laboratory, Central Laboratory, Sellafield, Seascale, Cumbria CA20 1PG, England, UK;

    SUPA, School of Physics & Astronomy, University of Glasgow, Kelvin Building, University Avenue, Glasgow G12 8QQ, Scotland, UK;

    SUPA, School of Physics & Astronomy, University of Glasgow, Kelvin Building, University Avenue, Glasgow G12 8QQ, Scotland, UK;

    SUPA, School of Physics & Astronomy, University of Glasgow, Kelvin Building, University Avenue, Glasgow G12 8QQ, Scotland, UK;

    SUPA, School of Physics & Astronomy, University of Glasgow, Kelvin Building, University Avenue, Glasgow G12 8QQ, Scotland, UK;

    SUPA, School of Physics & Astronomy, University of Glasgow, Kelvin Building, University Avenue, Glasgow G12 8QQ, Scotland, UK;

    SUPA, School of Physics & Astronomy, University of Glasgow, Kelvin Building, University Avenue, Glasgow G12 8QQ, Scotland, UK;

    SUPA, School of Physics & Astronomy, University of Glasgow, Kelvin Building, University Avenue, Glasgow G12 8QQ, Scotland, UK;

    National Nuclear Laboratory, Central Laboratory, Sellafield, Seascale, Cumbria CA20 1PG, England, UK;

    National Nuclear Laboratory, Central Laboratory, Sellafield, Seascale, Cumbria CA20 1PG, England, UK;

    SUPA, School of Physics & Astronomy, University of Glasgow, Kelvin Building, University Avenue, Glasgow G12 8QQ, Scotland, UK;

    National Nuclear Laboratory, Central Laboratory, Sellafield, Seascale, Cumbria CA20 1PG, England, UK;

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  • 正文语种 eng
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  • 关键词

    Muon tomography; Scintillator detectors; Nuclear waste;

    机译:层析成像闪烁探测器核废料;

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