首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >The ground calibration of X-ray CCD cameras (XIS) with front-illuminated chips onboard Astro-E2
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The ground calibration of X-ray CCD cameras (XIS) with front-illuminated chips onboard Astro-E2

机译:Astro-E2板上带有前照明芯片的X射线CCD摄像机(XIS)的地面校准

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We report on the results of the ground calibration of Astro-E2/XIS with front-illuminated (FI) chips. The sensors have basically the same performance as that of Astro-E/XIS. However, there are some improved points: (1) A ~(55)Fe radio isotope is equipped on the door and (2) the capability for charge injection (CI) has been added. We measured the gain, energy resolution, and quantum efficiency (QE) of the FI sensors as a function of energy by using characteristic X-rays for each sensor. An energy resolution of 130eV at 5.9 keV in FWHM and a QE of 52% at 8.6 keV are achieved. After XIS is launched, the charge transfer inefficiency (CTI) will increase due to radiation damage by cosmic rays. Then XIS is equipped with the CI capability to calibrate and compensate for the increase in CTI. We estimate the time variability in the amount of the injected charge.
机译:我们报告了带前照明(FI)芯片的Astro-E2 / XIS地面校准的结果。这些传感器的性能基本上与Astro-E / XIS相同。但是,有一些改进之处:(1)门上装有〜(55)Fe放射性同位素,并且(2)已添加了电荷注入(CI)的功能。通过对每个传感器使用特征X射线,我们测量了FI传感器的增益,能量分辨率和量子效率(QE)与能量的关系。 FWHM在5.9 keV时的能量分辨率为130eV,在8.6 keV时的QE为52%。发射XIS后,由于宇宙射线对辐射的损害,电荷转移低效率(CTI)将增加。然后,XIS具备CI功能,可以校准和补偿CTI的增加。我们估计注入电荷量随时间的变化。

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