在小型康普顿相机太空任务中使用 3D CZT 漂移条探测器的可行性

IF 1.3 4区 工程技术 Q3 INSTRUMENTS & INSTRUMENTATION Journal of Instrumentation Pub Date : 2024-01-01 DOI:10.1088/1748-0221/19/01/C01005
S. Owe, I. Kuvvetli, A. Zoglauer, C. Budtz-Jørgensen
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引用次数: 0

摘要

本可行性研究探讨了在小型康普顿相机有效载荷中使用 DTU Space 开发的三维 CZT 漂移条带探测器的可能性,主要目的是进行技术演示。我们为有效载荷定义了一个可扩展的质量模型,它由八个三维 CZT 漂移条带探测器组成,周围环绕着用于主动屏蔽的铯闪烁体探测器。通过模拟远场单色点源,对有效载荷的角度分辨率、有效面积和效率进行了评估。该仪器的灵敏度是在低地球轨道背景环境下对核线和连续发射源进行评估的。由于 3σ 点源灵敏度在 10-4 [ph/cm2/s] 数量级,这种仪器显然只能实现有限的科学目标。对亮源进行了在轨模拟,结果是在 5σ 的显著性水平上对蟹状星云进行了合理的观测。此外,对一些明亮的伽马射线暴进行的在轨模拟表明,观测明亮的瞬变事件是有潜力的。这项研究强调了在康普顿相机配置中使用三维 CZT 漂移条探测器的潜力,但也强调了需要更大的有效面积来提高灵敏度。不过,对于旨在提高三维 CZT 流条探测器技术就绪水平的技术演示,像本研究中介绍的小型康普顿相机配置可能是一个可行的解决方案。
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Feasibility of using 3D CZT drift strip detectors for small Compton camera space missions
This feasibility study explores the possibility of using 3D CZT drift strip detectors developed by DTU Space in a small Compton camera payload, with the primary objective of technology demonstration. We have defined a scalable mass model for the payload, comprising eight 3D CZT drift strip detectors surrounded by CsI scintillator detectors for active shielding. The payload's angular resolution, effective area, and efficiency are evaluated through simulations of far-field monochromatic point sources. The instrument's sensitivity is assessed in a low Earth orbit background environment for nuclear line and continuum emission sources. With a 3σ point source sensitivity in the order of 10-4 [ph/cm2/s], it is evident that such an instrument only allows for limited scientific goals. In-orbit simulations of bright sources are conducted, resulting in reasonable observation times for the Crab Nebula at a 5σ significance level. Furthermore, in-orbit simulations of a selection of bright gamma-ray bursts indicate the potential for observing bright transient events. The study underscores the potential of using 3D CZT drift strip detectors in Compton camera configurations but also highlights the need for a larger effective area to improve sensitivity. However, for a technology demonstration aimed at increasing the Technology Readiness Level of the 3D CZT drift strip detector, a small Compton camera configuration like the one presented in this study could be a viable solution.
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来源期刊
Journal of Instrumentation
Journal of Instrumentation 工程技术-仪器仪表
CiteScore
2.40
自引率
15.40%
发文量
827
审稿时长
7.5 months
期刊介绍: Journal of Instrumentation (JINST) covers major areas related to concepts and instrumentation in detector physics, accelerator science and associated experimental methods and techniques, theory, modelling and simulations. The main subject areas include. -Accelerators: concepts, modelling, simulations and sources- Instrumentation and hardware for accelerators: particles, synchrotron radiation, neutrons- Detector physics: concepts, processes, methods, modelling and simulations- Detectors, apparatus and methods for particle, astroparticle, nuclear, atomic, and molecular physics- Instrumentation and methods for plasma research- Methods and apparatus for astronomy and astrophysics- Detectors, methods and apparatus for biomedical applications, life sciences and material research- Instrumentation and techniques for medical imaging, diagnostics and therapy- Instrumentation and techniques for dosimetry, monitoring and radiation damage- Detectors, instrumentation and methods for non-destructive tests (NDT)- Detector readout concepts, electronics and data acquisition methods- Algorithms, software and data reduction methods- Materials and associated technologies, etc.- Engineering and technical issues. JINST also includes a section dedicated to technical reports and instrumentation theses.
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