Analysis of Secondary Particles as a Compliment to Muon Scattering Measurements

Q3 Physics and Astronomy
Maximilian Pérez Prada, Sarah Barnes, Maurice Stephan
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引用次数: 2

Abstract

Cosmic ray tomography is an emerging imaging technique utilizing an ambient source of radiation. One common tomography method is based on the measurement of muons scattered by the examined objects, which allows the reconstruction and discrimination of materials with different properties. From the interaction of air shower particles induced through cosmic rays with the material to be scanned, secondary particles, predominantly photons, neutrons and electrons, can be produced, which carry complementary information about the objects and their materials. However, this information is currently not fully exploited or only studied in coincidence with the incoming air shower particles. Therefore, this work presents a novel approach utilizing only the information from secondary particles to reconstruct and discriminate objects made out of a variety of materials. It also includes a detailed analysis of the kinematics of secondary particles and their dependency on material characteristics. In addition, a reconstruction algorithm to produce 3D maps of the examined volume from the measurement of secondary particles is introduced. This results in a successful reconstruction and differentiation of objects in various geometrical compositions.
辅助μ子散射测量的二次粒子分析
宇宙射线断层成像是一种新兴的利用环境辐射源的成像技术。一种常见的层析成像方法是基于对被检查物体散射的μ介子的测量,这允许重建和区分具有不同性质的材料。通过宇宙射线诱导的空气簇射粒子与待扫描材料的相互作用,可以产生二次粒子,主要是光子、中子和电子,它们携带着关于物体及其材料的补充信息。然而,这些信息目前还没有得到充分利用,或者只是在与进入的空气簇射粒子相吻合的情况下进行研究。因此,这项工作提出了一种新的方法,仅利用二次粒子的信息来重建和区分由各种材料制成的物体。它还包括对二次粒子的运动学及其对材料特性的依赖性的详细分析。此外,还引入了一种重建算法,用于根据二次粒子的测量生成检查体积的3D图。这导致了在各种几何构图中物体的成功重建和区分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Instruments
Instruments Physics and Astronomy-Instrumentation
CiteScore
2.60
自引率
0.00%
发文量
70
审稿时长
11 weeks
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