论文标题
X射线探测器的过滤器太空任务
Filters for X-ray detectors on Space missions
论文作者
论文摘要
薄的过滤器和气体紧密窗户用于空间中,以保护敏感的X射线探测器免受带外电磁辐射,低能颗粒和分子污染。尽管非常薄,并且由轻质材料制成,但过滤器并不完全透明X射线。因此,他们最终定义了低能量下的检测器量子效率。在本章中,我们最初简要概述了在空间实验上采用的过滤材料和特定设计,主要关注放牧X射线望远镜的焦平面上运行的检测器。然后,我们提供一系列投入,推动高能天体物理空间任务的滤镜设计和开发。我们首先确定推动初步设计的主要功能目标和要求,并确定建模工具和实验表征技术,以证明技术并巩固设计。最后,我们描述了以高精度得出过滤器响应所需的校准活动。我们以一些提示目前正在研究未来X射线任务的材料和技术的一些提示。
Thin filters and gas tight windows are used in Space to protect sensitive X-ray detectors from out-of-band electromagnetic radiation, low-energy particles, and molecular contamination. Though very thin and made of light materials, filters are not fully transparent to X-rays. For this reason, they ultimately define the detector quantum efficiency at low energies. In this chapter, we initially provide a brief overview of filter materials and specific designs adopted on space experiments with main focus on detectors operating at the focal plane of grazing incidence X-ray telescopes. We then provide a series of inputs driving the design and development of filters for high-energy astrophysics space missions. We begin with the identification of the main functional goals and requirements driving the preliminary design, and identify modeling tools and experimental characterization techniques needed to prove the technology and consolidate the design. Finally, we describe the calibration activities required to derive the filter response with high accuracy.We conclude with some hints on materials and technologies presently under investigation for future X-ray missions.