论文标题

L X射线金属的L X射线过渡的绝对能量和发射线形状

Absolute energies and emission line shapes of the L x-ray transitions of lanthanide metals

论文作者

Fowler, Joseph W., O'Neil, Galen C., Alpert, Bradley K., Bennett, Douglas A., Denison, Ed V., Doriese, W. B., Hilton, Gene C., Hudson, Lawrence T., Joe, Young-Il, Morgan, Kelsey M., Schmidt, Daniel R., Swetz, Daniel S., Szabo, Csilla I., Ullom, Joel N.

论文摘要

我们使用一系列过渡边缘传感器,具有4 eV能量分辨率的低温微钙化器,以测量Lanthanide系列四个元素的L X射线发射线谱:Praseodymium,Neododymium,Neododimium,Terbium和Holmium。光谱仪还调查了许多X射线标准,以建立可追溯到能源范围4 KEV至10 KEV的国际单元系统的绝对能量校准。新的结果包括97行的发射线轮廓,每条线都表示为一个或多个voigt函数的总和;相对于现有参考数据,相对于现有参考数据的71条提高了绝对能量不确定性;峰值能量的中位数不确定性为0.24 eV,比先前工作的中位数好四到十倍;和6行在现有参考表中缺少任何测量值。在宽带X射线激发下,这些元素几乎包含来自这些元素的几乎所有最激烈的L线。通过在吸收能量中具有更好线性的传感器和具有高斯能量响应函数的金X射线吸收层,通过使用具有更好线性的传感器来改善以前的测量值。它还采用了一种新型的样品持有人,该样本持有人可以在科学目标和校准目标之间快速切换,并具有出色的增益平衡。此处显示的峰值能值的大多数结果应视为替代当前表的标准参考值,而此处给出的线形状表示可用参考数据范围的显着扩展。

We use an array of transition-edge sensors, cryogenic microcalorimeters with 4 eV energy resolution, to measure L x-ray emission-line profiles of four elements of the lanthanide series: praseodymium, neodymium, terbium, and holmium. The spectrometer also surveys numerous x-ray standards in order to establish an absolute-energy calibration traceable to the International System of Units for the energy range 4 keV to 10 keV. The new results include emission line profiles for 97 lines, each expressed as a sum of one or more Voigt functions; improved absolute energy uncertainty on 71 of these lines relative to existing reference data; a median uncertainty on the peak energy of 0.24 eV, four to ten times better than the median of prior work; and 6 lines that lack any measured values in existing reference tables. The 97 lines comprise nearly all of the most intense L lines from these elements under broad-band x-ray excitation. The work improves on previous measurements made with a similar cryogenic spectrometer by the use of sensors with better linearity in the absorbed energy and a gold x-ray absorbing layer that has a Gaussian energy-response function. It also employs a novel sample holder that enables rapid switching between science targets and calibration targets with excellent gain balancing. Most of the results for peak energy values shown here should be considered as replacements for the currently tabulated standard reference values, while the line shapes given here represent a significant expansion of the scope of available reference data.

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