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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Optical blocking performance of CCDs developed for the X-ray Astronomy Satellite XRISM
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Optical blocking performance of CCDs developed for the X-ray Astronomy Satellite XRISM

机译:用于X射线天文卫星XRism开发CCD的光阻塞性能

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We have been developing P-channel Charge-Coupled Devices (CCDs) for the upcoming X-ray Astronomy Satellite XRISM, planned to be launched in 2021. While the basic design of the CCD camera (Soft X-ray Imager: SXI) is almost the same as that of the lost Hitomi (ASTRO-H) observatory, we are planning to reduce the phenomenon of "light leakages" that is one of the largest problems recognized in Hitomi data. We adopted a double-layer optical blocking layer on the XRISM CCDs and also added an extra aluminum layer on the backside of them. We develop a newly designed test sample CCD and irradiate it with optical light to evaluate the optical blocking performance. As a result, light leakages are effectively reduced compared with that of the Hitomi CCDs. We thus conclude that the issue is solved by the new design and that the XRISM CCDs satisfy the mission requirement for the SXI.
机译:我们已经开发了用于即将到来的X射线天文卫星XRIS的P频道电荷耦合器件(CCD),计划于2021年推出。虽然CCD相机(软X射线成像器:SXI)的基本设计几乎是与失落的杀死者(Astro-H)天文台相同,我们计划减少“漏洞”的现象,这是Hitomi数据中识别的最大问题之一。我们在Xrism CCD上采用了双层光阻挡层,并在它们的背面添加了额外的铝层。我们开发了一个新设计的测试样品CCD,并用光学光照射,以评估光学阻挡性能。结果,与Hitomi CCD的比较有效地减少了漏光。因此,我们得出结论,该问题由新设计解决,Xrism CCD满足SXI的任务要求。

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