用国际空间站上的阿尔法磁谱仪测量200兆电子伏特至1兆电子伏特的高能伽马射线

B. Beischer
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引用次数: 3

摘要

本文介绍了用α磁谱仪测量200 MeV ~ 1 TeV之间的高能γ射线通量的方法。阿尔法磁谱仪(AMS-02)是安装在国际空间站外部的多用途粒子探测器。虽然主要是为测量带电宇宙射线而设计的,但AMS-02能够以两种互补模式测量高能伽马射线。本文分别对两种模态分别进行了两种独立的分析。详细介绍了事件选择标准和相关的解析函数。有效面积由全检测器蒙特卡罗模拟估计,并对数据和模拟之间最重要的差异进行校正。根据漫射发射预测和最近的伽玛射线源目录,构建了伽玛射线的全天空模型。对Fermi-LAT数据进行了专门的分析,以充分实现与AMS结果的详细比较。给出了天空不同部分的伽马射线的测量通量,包括与Fermi-LAT数据和构建模型的比较。对内星系进行了详细的研究,作为一个光子通量以漫射发射为主的区域的例子。显示了几个伽马射线产生源的通量,包括船帆座、Geminga和蟹状脉冲星。对Geminga脉冲星进行了详细的研究,在AMS-02数据中揭示了它的脉冲发射$\gamma$-射线,这可以测量它的旋转频率,并估计它的磁场强度和年龄。最后,AMS-02在2016年底观测到了CTA-102的爆发。
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Measurement of High Energy Gamma Rays from 200 MeV to 1 TeV with the Alpha Magnetic Spectrometer on the International Space Station
In this thesis a measurement of the high energy $\gamma$-ray flux between 200 MeV and 1 TeV with the Alpha Magnetic Spectrometer is presented. The Alpha Magnetic Spectrometer (AMS-02) is a multi-purpose particle detector mounted externally on the International Space Station. Although primarily designed for the measurement of charged cosmic rays AMS-02 is capable of measuring high energy $\gamma$-rays in two complementary modes. Two independent analyses are presented in this thesis, one for each of the two modes. The event selection criteria and the associated resolution functions are presented in detail. The effective area is estimated from a full detector Monte-Carlo simulation and corrected for the most important differences between data and simulation. A full sky model for $\gamma$-rays is constructed from diffuse emission predictions and recent $\gamma$-ray source catalogs. A dedicated analysis of Fermi-LAT data is performed to fully enable a detailed comparison with the AMS result. The measured flux of $\gamma$-rays is presented for various parts of the sky, including comparisons with Fermi-LAT data and with the constructed model. The inner galaxy is studied in detail, as an example of a region in which the photon flux is dominated by diffuse emission. The fluxes of several $\gamma$-ray producing sources, including Vela, Geminga and the Crab pulsar are shown. The Geminga pulsar is studied in detail, revealing its pulsed emission of $\gamma$-rays in the AMS-02 data, which allows to measure its frequency of rotation and to estimate its magnetic field strength and age. Finally, AMS-02 observed an outburst of the flaring blazar CTA-102 at the end of 2016.
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