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Absolute measurement of oxygen edge structure in the quantum efficiency of X-ray CCDs

机译:X射线CCD量子效率中氧边缘结构的绝对测量

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As part of the program to calibrate X-ray CCD detectors for the AXAF mission we have performed high-spectral resolution, absolute measurements of CCD quantum efficiency using the synchrotron radiation and grating monochromator facilities of the PTB radiometry laboratory at BESSY. We present here detailed measurements of the absolute quantum efficiency in the spectral region surrounding the oxygen K absorption edge for both front- and back-illuminated MIT Lincoln Laboratory CCDs. The absolute scale of the measurements is established by reference to an Electrical Substitution Radiometer. Near-edge absorption structure produces variations as large as 40% in the detection efficiency of the front-illuminated detectors. We find structure at energies immediately below the K absorption edge which we attribute to resonant absorption. The amplitude of edge structures in the back-illuminated devices is, as expected, much smaller. Finally, we demonstrate that edge structure can be reliably detected in CCD response using an electron impact source and a grating monochromator.
机译:作为为AXAF任务校准X射线CCD检测器的计划的一部分,我们已经使用BESSY的PTB辐射实验室的同步辐射和光栅单色仪设施进行了高光谱分辨率,CCD量子效率的绝对测量。我们在此展示了麻省理工学院林肯实验室CCD前后氧K吸收边缘周围光谱区域中绝对量子效率的详细测量。测量的绝对比例通过参考电子替代辐射计确定。近边缘吸收结构在前照式探测器的探测效率上产生高达40%的变化。我们在正好位于K吸收边下方的能量处发现结构,这归因于共振吸收。如所预期的,背照式设备中边缘结构的幅度要小得多。最后,我们证明了可以使用电子冲击源和光栅单色仪在CCD响应中可靠地检测边缘结构。

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