论文标题

伽马射线探测器和任务设计模拟

Gamma-ray detector and mission design simulations

论文作者

Charles, Eric A., Fleischhack, Henrike, Sleator, Clio

论文摘要

伽马射线天文学的探测器很复杂:它们通常构成多个子系统,并利用新的和/或定制开发的检测器组件和读取电子产品。通常未直接检测到伽马射线:地面检测器测量由宇宙伽马射线引发的带电颗粒的广泛空气淋浴,甚至在气球或卫星上进行了所谓的“直接检测”实验,通常会从检测器中产生的二级颗粒中重建输入的伽马射线光子的特性。同时,几乎没有“标准蜡烛”,也没有可行的高能和高能量伽玛射线的可行陆地来源,可用于校准检测器。因此,在大气中和/或与仪器相互作用的颗粒的模拟在伽马射线天文学中无处不在。这些模拟用于事件重建和数据分析,以表征检测器性能并优化检测器设计。在本章中,我们概述了如何以及为什么在伽马射线天文学中使用模拟及其局限性。我们讨论了广泛的空气淋浴模拟,对检测器中相互作用的伽玛射线和二次颗粒的模拟以及读取电子设备的模拟。我们提供了用于伽马射线天文学中模拟各个方面的软件包的示例。最后,我们描述了这些模拟产生的性能指标和仪器响应函数,这些模拟对仪器设计和数据分析至关重要。

Detectors for gamma-ray astronomy are complex: they often comprise multiple sub-systems and utilize new and/or custom-developed detector components and readout electronics. Gamma rays are typically not detected directly: ground-based detectors measure extensive air showers of charged particles initiated by cosmic gamma-rays, and even so-called "direct detection" experiments on balloons or satellites usually reconstruct the incoming gamma-ray photons' properties from the secondary particles produced in the detector. At the same time, there are few "standard candles" and no feasible terrestrial sources of high-energy and very-high-energy gamma rays that could be used to calibrate the detectors. Simulations of particles interacting in the atmosphere and/or with the instrument are thus ubiquitous in gamma-ray astronomy. These simulations are used in event reconstruction and data analysis, to characterize detector performance, and to optimize detector design. In this chapter, we give an overview of how and why simulations are used in gamma-ray astronomy, as well as their limitations. We discuss extensive air shower simulations, simulations of gamma rays and secondary particles interacting in the detector, and simulations of the readout electronics. We provide examples for software packages that are used for various aspects of simulations in gamma-ray astronomy. Lastly, we describe the performance metrics and instrument response functions that are generated from these simulations, which are critical to instrument design and data analysis.

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