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Optimized transition-edge x-ray microcalorimeter with 2.4 eV energy resolution at 5.9 keV

机译:优化的过渡边缘X射线微热量计,在5.9 keV时具有2.4 eV的能量分辨率

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摘要

We present measurements from a series of transition-edge x-ray microcalorimeters designed for optimal energy resolution. We used the geometry of the sensors to control their heat capacity and employed additional normal metal features and a perpendicular magnetic field to control the sharpness of the superconducting-to-normal transition. These degrees of control allow an optimal selection of sensor saturation energy and noise. Successive design changes improved the measured energy resolution of the sensors from 4.5 eV full width at half maximum at 5.9 keV to 2.4 eV at 5.9 keV. Sensors with this energy resolution are well matched to applications in x-ray astrophysics and terrestrial materials analysis.
机译:我们介绍了一系列为最佳能量分辨率而设计的过渡边缘X射线微热量计的测量结果。我们使用传感器的几何形状来控制它们的热容量,并采用其他正常的金属特征和垂直磁场来控制超导到正常过渡的清晰度。这些控制程度允许传感器饱和能量和噪声的最佳选择。连续的设计更改将传感器的测量能量分辨率从5.9 keV的半峰全宽4.5 eV提高到5.9 keV的2.4 eV。具有这种能量分辨率的传感器非常适合X射线天体物理学和地面材料分析中的应用。

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