论文标题

成像X射线极化探索器的机上校准系统

In-flight calibration system of Imaging X-ray Polarimetry Explorer

论文作者

Ferrazzoli, Riccardo, Muleri, Fabio, Lefevre, Carlo, Morbidini, Alfredo, Amici, Fabrizio, Brienza, Daniele, Costa, Enrico, Del Monte, Ettore, Di Marco, Alessandro, Di Persio, Giuseppe, Donnarumma, Immacolata, Fabiani, Sergio, La Monaca, Fabio, Loffredo, Pasqualino, Maiolo, Luca, Maita, Francesco, Piazzolla, Raffaele, Ramsey, Brian, Rankin, John, Ratheesh, Ajay, Rubini, Alda, Sarra, Paolo, Soffitta, Paolo, Tobia, Antonino, Xie, Fei

论文摘要

NASA/ASI成像X射线极化探索器将于2021年推出,它将是第一款在2-8 KEV Energy Band中的几个天文源上执行空间分辨的X射线极化法的仪器。由于在三个X射线望远镜的焦点上使用了气体像素检测器(GPD),因此可以实现这些测量值。 GPD允许同时测量检测到的X射线光子的相互作用点,能量,到达时间和极化角。 40年前实现的灵敏度的提高,用于与爱因斯坦卫星的成像和光谱法首次扩展到X射线极化法。气体繁殖检测器的特征会随着时间的推移而发生变化。由于GPD是一种新颖的工具,因此在其任务寿命中验证其性能和稳定性尤其重要。为此,航天器托管了滤波器和校准集(FCS),其中包括偏振和非校准校准源,用于执行仪器的机上校准。在这项研究中,我们介绍了FCS的飞行模型的设计以及使用硅漂移探测器和CCD摄像机获得的首次测量,以及使用GPD的飞行单位在热真空中获得的。我们表明,校准来源成功评估和验证了GPD的功能,并验证其在轨道中的科学结果。这可以提高我们对这些检测器在X射线极化法中的行为的了解。

The NASA/ASI Imaging X-ray Polarimetry Explorer, which will be launched in 2021, will be the first instrument to perform spatially resolved X-ray polarimetry on several astronomical sources in the 2-8 keV energy band. These measurements are made possible owing to the use of a gas pixel detector (GPD) at the focus of three X-ray telescopes. The GPD allows simultaneous measurements of the interaction point, energy, arrival time, and polarization angle of detected X-ray photons. The increase in sensitivity, achieved 40 years ago, for imaging and spectroscopy with the Einstein satellite will thus be extended to X-ray polarimetry for the first time. The characteristics of gas multiplication detectors are subject to changes over time. Because the GPD is a novel instrument, it is particularly important to verify its performance and stability during its mission lifetime. For this purpose, the spacecraft hosts a filter and calibration set (FCS), which includes both polarized and unpolarized calibration sources for performing in-flight calibration of the instruments. In this study, we present the design of the flight models of the FCS and the first measurements obtained using silicon drift detectors and CCD cameras, as well as those obtained in thermal vacuum with the flight units of the GPD. We show that the calibration sources successfully assess and verify the functionality of the GPD and validate its scientific results in orbit; this improves our knowledge of the behavior of these detectors in X-ray polarimetry.

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