论文标题

X-Calibur Hard Hard X射线极化任务在其2018/19长气球飞行中的表现

Performance of the X-Calibur Hard X-Ray Polarimetry Mission during its 2018/19 Long-Duration Balloon Flight

论文作者

Abarr, Quincy, Beheshtipour, Banafsheh, Beilicke, Matthias, Bose, Richard, Braun, Dana, de Geronimo, Gianluigi, Dowkontt, Paul, Errando, Manel, Gadson, Thomas, Guarino, Victor, Heatwole, Scott, Hossen, Md. Arman, Iyer, Nirmal K., Kislat, Fabian, Kiss, Mózsi, Kitaguchi, Takao, Krawczynski, Henric, Lanzi, R. James, Li, Shaorui, Lisalda, Lindsey, Okajima, Takashi, Pearce, Mark, Peterson, Zachary, Press, Logan, Rauch, Brian, Simburger, Garry, Stuchlik, David, Takahashi, Hiromitsu, Tang, Jason, Uchida, Nagomi, West, Andrew

论文摘要

X-Calibur是一种气球传播的望远镜,可在15--50keV能量范围内测量高能X射线的极化。该仪器利用了X射线优先垂直于极化方向的事实。一个被像素化的CZT检测器包围的铍散射元件位于InfocμS硬X射线镜的焦点。该乐器是为2018年12月29日从麦克默多(南极)从麦克穆尔多(南极)飞行的长时间气球(LDB)飞行的,并获得了积聚驱动的脉冲星的硬X射线极化的第一个约束。在这里,我们描述了仪器在地面上的表征和校准及其在飞行过程中的性能,以及粒子背景的模拟以及与测量速率的比较。指向系统和极化计实现了出色的预期性能。发现抗费系统的能量检测阈值高于预期,并且表现出意外的死亡时间。这两个问题都将用于未来的航班。总体而言,任务表现是名义上的,结果将为XL-Calibur的后续任务XL-Calibur提供信息,该任务计划于2022年夏季推出。

X-Calibur is a balloon-borne telescope that measures the polarization of high-energy X-rays in the 15--50keV energy range. The instrument makes use of the fact that X-rays scatter preferentially perpendicular to the polarization direction. A beryllium scattering element surrounded by pixellated CZT detectors is located at the focal point of the InFOCμS hard X-ray mirror. The instrument was launched for a long-duration balloon (LDB) flight from McMurdo (Antarctica) on December 29, 2018, and obtained the first constraints of the hard X-ray polarization of an accretion-powered pulsar. Here, we describe the characterization and calibration of the instrument on the ground and its performance during the flight, as well as simulations of particle backgrounds and a comparison to measured rates. The pointing system and polarimeter achieved the excellent projected performance. The energy detection threshold for the anticoincidence system was found to be higher than expected and it exhibited unanticipated dead time. Both issues will be remedied for future flights. Overall, the mission performance was nominal, and results will inform the design of the follow-up mission XL-Calibur, which is scheduled to be launched in summer 2022.

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