The Use of Synchrotron Radiation as an Absolute Source of VUV Radiation.

D L Ederer, E B Saloman, S C Ebner, R P Madden
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引用次数: 33

Abstract

Synchrotron radiation has been used as a standard source to calibrate spectrographic instruments at the National Bureau of Standards (NBS). Conceptually it is straightforward to apply the calculable continuum distribution of synchrotron radiation to problems requiring a source of known irradiance if the electron energy, the radius of the electron orbit, and the beam current are known. In practice many factors affect the accuracy of such a calibration, such as temporal and spatial variations in the electron beam, uncertainties in the orbital radius and maximum energy of the orbiting electron beam. These sources of error are discussed and the method of calibration on SURF-I is specified. A storage ring synchrotron radiation facility (SURF-II) is now operational at NBS. The calibration techniques developed for SURF-I are applied to SURF-II with anticipated improvements in calibration accuracy. For SURF-I the incident flux was determined with an accuracy of 15 percent while for SURF-II we anticipate accuracies of about 7 percent.

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同步辐射作为紫外辐射的绝对来源。
同步辐射已被国家标准局(NBS)用作校准光谱仪器的标准源。从概念上讲,如果电子能量、电子轨道半径和光束电流是已知的,那么将同步辐射的可计算连续分布应用于需要已知辐照度源的问题是直截了当的。在实际应用中,电子束的时空变化、轨道半径的不确定性和轨道电子束的最大能量等因素会影响标定的精度。讨论了这些误差来源,并给出了在SURF-I上标定的方法。一个存储环同步辐射设施(SURF-II)现在在国家统计局运行。为SURF-I开发的校准技术应用于SURF-II,预期校准精度有所提高。对于SURF-I,入射通量的确定精度为15%,而对于SURF-II,我们预计精度约为7%。
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