NBS玻璃光谱透过率标准的再标定

H. J. Keegan, J. C. Schleter, M. Belknap
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引用次数: 5

摘要

1934年,Gibson, Walker和Brown开发了一套四种彩色玻璃滤光片,作为检查分光光度计可靠性的光谱透射率的工作标准。有几套这样的玻璃杯被仔细地测量过,并保留下来作为将来的参考标准。通过与参考标准比较评估的重复标准可向公众购买。目前的一套参考标准是在1945年至1947年建立的,其中一个参考标准(硒红)于1952年重新校准。本文报告了1961年和1962年在三个分光光度计(Cary 14, Beckman DU, König-Martens)上对所有四种玻璃(硒红,碳黄,铜绿,钴蓝)进行的重新校准。除了钴蓝标准外,所发现的光谱透过率值与先前的值不同,在某些波长上的差异与当前值估计的不确定度相差相同或略大,但不超过当前和以前测定的不确定度总和。然而,这三种标准的变化是相当有规律的,这支持了硒红和碳黄标准的变化主要是由于表面上形成了一层减少反射的薄膜。所指示的向上漂移的速率是缓慢的,并且表明漂移需要大约10年的时间才能超过指定的不确定度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recalibration of the NBS Glass Standards of Spectral Transmittance1
In 1934, Gibson, Walker, and Brown developed sets of four colored glass filters to serve as working standards of spectral transmittance for checking the reliability of spectrophotometers. Several sets of these glasses were measured carefully and reserved and designated as future reference standards. Duplicate standards evaluated by comparison with the reference standards are available by purchase to the public. The current set of reference standards was established in the years 1945 to 1947, and one of these reference standards (selenium-red) was recalibrated in 1952. This paper reports a recalibration, made in 1961 and 1962, of all four glasses (selenium-red, carbon-yellow, copper-green, cobalt-blue) on three spectrophotometers (Cary 14, Beckman DU, König-Martens). Except for the cobalt-blue standard, the values of spectral transmittance found differ from those previously assigned by amounts differing at some wavelengths by as much as or slightly more than the uncertainties estimated for the present values, though not by amounts exceeding the combined uncertainties of the present and previous determinations. The indicated changes for these three standards are fairly regular, however, and support the view that the selenium-red and carbon-yellow standards are changing chiefly by formation of a reflectance-reducing film on the surfaces. The indicated rate of upward drift is slow, and suggests that it takes about 10 years for the drift to exceed the assigned uncertainity.
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