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Synchrotron-radiation-operated cryogenic electrical-substitution radiometer as the high-accuracy primary detector standard in the ultraviolet, vacuum-ultraviolet, and soft-x-ray spectral ranges

机译:同步辐射操作的低温电替代辐射计,是紫外线,真空紫外线和软X射线光谱范围内的高精度主要检测器标准

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The accuracy of detector calibration in the UV, vacuum-ultraviolet, and soft-x-ray spectral ranges could be significantly improved by the use of the synchrotron radiation electrical substitution radiometer (SYRES) as the primary detector standard. The SYRES radiometer is optimized for use with spectrally dispersed synchrotron radiation as supplied by two monochromator beam lines in the radiometry laboratory of the Physikalisch-Technische Bundesanstalt at the Berlin electron-storage ring (BESSY). Wavelength ranges from 0.8 to 25 nm and from 35 to 400 nm are covered. The typically available radiant power of similar to 1-10 mu W can be measured with the SYRES radiometer with a standard relative uncertainty of less than 0.2%. The spectral responsivity of qualified photodiodes for use as secondary detector standards is determined by direct comparison with the primary detector standard at an arbitrary wavelength. At present, the scale of spectral responsivity is realized with a standard relative uncertainty of well below 1% in the spectral ranges 0.8-3.5 nm, 5-25 nm, and 120-400 nm. We provide a comprehensive description of the SYRES radiometer and of the two facilities for detector calibration in the UV and vacuum-ultraviolet spectral ranges and in the soft-x-ray spectral range, respectively, and we discuss the achievable uncertainties in the calibration of detectors. (C) 1997 Optical Society of America.
机译:通过使用同步辐射电子替代辐射计(SYRES)作为主要检测器标准,可以显着提高UV,真空紫外线和软X射线光谱范围中检测器校准的准确性。 SYRES辐射计经过优化,可与光谱分散的同步加速器辐射配合使用,该辐射由位于柏林电子存储环(BESSY)的Physikalisch-Technische Bundesanstalt辐射实验室的两条单色仪光束线提供。覆盖了从0.8到25nm和从35到400nm的波长范围。可用SYRES辐射计测量的典型可用辐射功率约为1-10μW,标准相对不确定度小于0.2%。通过与任意波长下的主要检测器标准直接比较,可以确定用作次要检测器标准的合格光电二极管的光谱响应度。目前,在0.8-3.5 nm,5-25 nm和120-400 nm的光谱范围内,光谱响应度的规模是通过低于1%的标准相对不确定度实现的。我们分别对SYRES辐射计以及在紫外和真空紫外光谱范围内以及在软X射线光谱范围内用于检测器校准的两种设施进行了全面描述,并讨论了检测器校准中可实现的不确定性。 (C)1997年美国眼镜学会。

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