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The effective area calibration precision analysis of grazing incidence soft x-ray optical system

机译:掠入射软X射线光学系统的有效面积校准精度分析

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The grazing incidence soft X-ray optical system is the core equipment of future space science missions. The optical system expands the collecting area of x-ray photos and improves the SNR. The effective area calibration is the key indicator for testing and verifying the performance of the grazing incidence optical system. One of the traditional calibration methods uses the wide x-ray beam as the calibration x-ray source. This calibration method requires large ground equipment, high environmental conditions while the x-ray beam is not so parallel that the calibration accuracy is limited. Another effective area calibration method uses the narrow x-ray beam scan the optical system. In this paper, the above two effective area calibration methods of the grazing incidence optical system are modeled mathematically. The factors such as the parallelism of the beam, the uniformity of the beam and the characteristics of optical system are absorbed into the unified mathematical model for describing the effective area. The key factors which affect the effective area calibration accuracy are extracted, and their influences on the calibration result are analyzed. Eventually the two calibration methods accuracy is evaluated and the ways for improving the calibration accuracy are given. The effective area calibration is able to test and verify the collecting ability of x-ray photons of the grazing incidence optical system, which is the basis for the development of soft x-ray optics.
机译:掠入射软X射线光学系统是未来太空科学任务的核心设备。光学系统扩大了X射线照片的收集区域并提高了SNR。有效面积校准是测试和验证掠入射光学系统性能的关键指标。传统的校准方法之一是使用宽X射线束作为校准X射线源。这种校准方法需要大型地面设备,高环境条件,而X射线束并非如此平行,以至于校准精度受到限制。另一种有效的面积校准方法是使用窄X射线束扫描光学系统。本文对掠入射光学系统的上述两种有效面积标定方法进行了数学建模。光束的平行度,光束的均匀性和光学系统的特性等因素被吸收到用于描述有效面积的统一数学模型中。提取影响有效面积标定精度的关键因素,分析其对标定结果的影响。最终评估了两种校准方法的准确性,并给出了提高校准精度的方法。有效面积校准能够测试和验证掠入射光学系统的X射线光子的收集能力,这是开发软X射线光学系统的基础。

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