Optical Power Scale Realization by Laser Calorimeter after 45 Years of Operation.

IF 1.3 4区 工程技术 Q3 INSTRUMENTS & INSTRUMENTATION
Matthew T Spidell, Anna K Vaskuri
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引用次数: 0

Abstract

To calibrate laser power and energy meters, the National Institute of Standards and Technology (NIST) uses several detector-based realizations of the scale for optical radiant flux; these realizations are appropriate for specific laser power/energy ranges and optical coupling configurations. Calibrations from 1 µW to 2 W are currently based upon calorimeters. Validation by comparisons against other primary representations of the optical watt over the last two decades suggests the instruments operate well within their typical reported uncertainty level of 0.86 % with 95 % confidence. The dominant uncertainty contribution in the instrument is attributable to light scattered by the legacy window, which was not previously recognized. The inherent electro-optical inequivalence in the calorimeter's response was reassessed by thermal modeling to be 0.03 %. The principal contributions to the overall inequivalence were corrected, yielding a shift in scale representation under 0.2 % for typical calibrations. With updates in several uncertainty contributions resulting from this reassessment, the resulting combined expanded uncertainty (k = 2) is 0.84 %, which is essentially unchanged from the previous result provided to calibration customers.

运行45年的激光量热计实现光功率标度
为了校准激光功率计和能量计,美国国家标准与技术研究所(NIST)使用了几种基于探测器的光学辐射通量标尺实现;这些实现适用于特定的激光功率/能量范围和光学耦合配置。从1μW到2 W的校准目前是基于量热计的。通过与过去二十年中光学瓦的其他主要表示进行比较进行验证,表明仪器在其典型报告的0.86%的不确定度水平内运行良好,置信度为95%。仪器中的主要不确定性贡献归因于遗留窗口散射的光,而这一点以前没有得到承认。热量计响应中固有的电光当量通过热建模重新评估为0.03%。对总体不等式的主要贡献进行了校正,在典型校准中,标度表示的变化低于0.2%。随着此次重新评估产生的几个不确定度贡献的更新,由此产生的组合扩展不确定度(k=2)为0.84%,与之前提供给校准客户的结果基本上没有变化。
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来源期刊
自引率
33.30%
发文量
10
审稿时长
>12 weeks
期刊介绍: The Journal of Research of the National Institute of Standards and Technology is the flagship publication of the National Institute of Standards and Technology. It has been published under various titles and forms since 1904, with its roots as Scientific Papers issued as the Bulletin of the Bureau of Standards. In 1928, the Scientific Papers were combined with Technologic Papers, which reported results of investigations of material and methods of testing. This new publication was titled the Bureau of Standards Journal of Research. The Journal of Research of NIST reports NIST research and development in metrology and related fields of physical science, engineering, applied mathematics, statistics, biotechnology, information technology.
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