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Wolter-1型X射线聚焦镜可将掠入射的X射线反射至焦平面处,具有较强的成像探测能力,在天文探测等领域中具有重要作用.通过建立几何模型对反射镜面及反射光线方程进行理论计算,推导出了适用于以玻璃为基底材料的聚焦镜设计参数方程,可用于对此类聚焦镜进行理论设计,依据理论设计,采用具有极高表面光洁度的超薄肖特D263T玻璃经热弯成型后作为反射镜基底,在反射镜表面制备金属铱薄膜作为反射膜研制了Wolter-1型反射镜组,并使用激光三维扫描仪对所研制的聚焦镜片面型进行了测试.测试结果显示,实际镜片面型与理想镜片面型公差在10 μm以内的测试点占总测试点的50%.通过搭建可见光条件下的焦斑测试系统,使用图像采集相机采集焦斑的灰度图像,通过图像分析软件分析计算该灰度图像的灰度分布来定量分析焦斑的能量分布情况,从而确定焦斑特性参数.实验结果显示:研制出的聚焦镜片焦距为1.6 m,焦斑的半能量包围直径为0.33 mm,对应角分辨率为0.7角分. 相似文献
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The pulse time of arrival (TOA) is a determining parameter for accurate timing and positioning in X-ray pulsar navigation. The pulse TOA can be calculated by comparing the measured arrival time with the predicted arrival time of the X-ray pulse for pulsar. In this study, in order to research the measurement of pulse arrival time, an experimental system is set up. The experimental system comprises a simulator of the X-ray pulsar, an X-ray detector, a time-measurement system, and a data-processing system. An X-ray detector base is proposed on the basis of the micro-channel plate (MCP), which is sensitive to soft X-ray in the 1–10 keV band. The MCP-based detector, the structure and principle of the experimental system, and results of the pulse profile are described in detail. In addition, a discussion of the effects of different X-ray pulse periods and the quantum efficiency of the detector on pulse-profile signal-to-noise ratio (SNR) is presented. Experimental results reveal that the SNR of the measured pulse profile becomes enhanced as the quantum efficiency of the detector increases. The SNR of the pulse profile is higher when the period of the pulse is smaller at the same integral. 相似文献
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