论文标题

简单,紧凑的高分辨率单色X射线源,用于表征X射线热量表阵列

Simple, compact, high-resolution monochromatic x-ray source for characterization of x-ray calorimeter arrays

论文作者

Leutenegger, M. A., Eckart, M. E., Moseley, S. J., Rohrbach, S. O., Black, J. K., Chiao, M. P., Kelley, R. L., Kilbourne, C. A., Porter, F. S.

论文摘要

X射线热量表通常达到非常高的光谱分辨率,通常在最大半(FWHM)下有几个EV的全宽度。量热计线形状的测量通常由大多数实验室校准源的自然线宽主导。这使得在统计学上采样仪器线扩展所需的数据采集时间,如果源的内在线形状尚不清楚,则可以增加系统的不确定性。为了解决这些问题,我们使用通道切割晶体构建了一个简单,紧凑的单色X射线源。商用X射线管照明一对频道切割晶体,该晶体以色散配置对齐,以选择X射线管阳极材料的\ kaone线。整个设备,包括X射线管,可以轻松由一个人手工携带,并且可以手动定位或使用机械翻译阶段。输出单色光束提供了阳极点的准直图像,并在色散方向上放大了统一(通常为这里使用的X射线管的100-200 $ $ m $ m),并且在交叉分散方向上不关注,因此检测器平面中的源图像显示为一条线。对于Hitomi软X射线光谱仪,我们测量的输出率高达10个计数/S/像素,该光谱仪具有819美元的平方像素。我们对5.4 keV(一个设计)和8.0 keV(两个设计)的能量实施了不同的单色器设计,这些能量分别具有0.125、0.197和0.086 eV的有效理论FWHM能量分辨率;这些非常适合最佳的X射线热量表的最佳校准测量。我们测量了\ crkaone单色仪为0.7 eV FWHM在5.4 keV时的能量分辨率的上限,与0.125 eV的理论预测一致。

X-ray calorimeters routinely achieve very high spectral resolution, typically a few eV full width at half maximum (FWHM). Measurements of calorimeter line shapes are usually dominated by the natural linewidth of most laboratory calibration sources. This compounds the data acquisition time necessary to statistically sample the instrumental line broadening, and can add systematic uncertainty if the intrinsic line shape of the source is not well known. To address these issues, we have built a simple, compact monochromatic x-ray source using channel cut crystals. A commercial x-ray tube illuminates a pair of channel cut crystals which are aligned in a dispersive configuration to select the \kaone line of the x-ray tube anode material. The entire device, including x-ray tube, can be easily hand carried by one person and may be positioned manually or using a mechanical translation stage. The output monochromatic beam provides a collimated image of the anode spot with magnification of unity in the dispersion direction (typically 100-200 $μ$m for the x-ray tubes used here), and is unfocused in the cross-dispersion direction, so that the source image in the detector plane appears as a line. We measured output count rates as high as 10 count/s/pixel for the Hitomi Soft X-ray Spectrometer, which had 819 $μ$m square pixels. We implemented different monochromator designs for energies of 5.4 keV (one design) and 8.0 keV (two designs) which have effective theoretical FWHM energy resolution of 0.125, 0.197, and 0.086 eV, respectively; these are well-suited for optimal calibration measurements of state-of-the art x-ray calorimeters. We measured an upper limit for the energy resolution of our \crkaone monochromator of 0.7 eV FWHM at 5.4 keV, consistent with the theoretical prediction of 0.125 eV.

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