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Contributed Review: Absolute spectral radiance calibration of fiber-optic shock-temperature pyrometers using a coiled-coil irradiance standard lamp

机译:贡献的评论:使用盘绕线圈辐照度标准灯对光纤冲击温度高温计的绝对光谱辐射度进行校准

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摘要

We describe an accurate and precise calibration procedure for multichannel optical pyrometers such as the 6-channel, 3-ns temporal resolution instrument used in the Caltech experimental geophysics laboratory. We begin with a review of calibration sources for shock temperatures in the 3000-30 000 K range. High-power, coiled tungsten halogen standards of spectral irradiance appear to be the only practical alternative to NIST-traceable tungsten ribbon lamps, which are no longer available with large enough calibrated area. However, non-uniform radiance complicates the use of such coiled lamps for reliable and reproducible calibration of pyrometers that employ imaging or relay optics. Careful analysis of documented methods of shock pyrometer calibration to coiled irradiance standard lamps shows that only one technique, not directly applicable in our case, is free of major radiometric errors. We provide a detailed description of the modified Caltech pyrometer instrument and a procedure for its absolute spectral radiance calibration, accurate to ±5%. We employ a designated central area of a 0.7× demagnified image of a coiled-coil tungsten halogen lamp filament, cross-calibrated against a NIST-traceable tungsten ribbon lamp. We give the results of the cross-calibration along with descriptions of the optical arrangement, data acquisition, and processing. We describe a procedure to characterize the difference between the static and dynamic response of amplified photodetectors, allowing time-dependent photodiode correction factors for spectral radiance histories from shock experiments. We validate correct operation of the modified Caltech pyrometer with actual shock temperature experiments on single-crystal NaCl and MgO and obtain very good agreement with the literature data for these substances. We conclude with a summary of the most essential requirements for error-free calibration of a fiber-optic shock-temperature pyrometer using a high-power coiled tungsten halogen irradiance standard lamp.
机译:我们描述了用于多通道光学高温计(例如在Caltech实验地球物理实验室中使用的6通道,3 ns时间分辨率仪器)的精确校准程序。我们首先回顾一下3000-30 000 K范围内冲击温度的校准源。光谱辐照度的高功率,盘绕的卤钨钨标准品似乎是可替代NIST的钨带灯的唯一实用选择,后者不再具有足够大的校准面积。然而,不均匀的辐射使这种盘绕灯的使用复杂化,从而难以可靠且可再现地校准采用成像或中继光学器件的高温计。对震荡高温计校准成卷辐照度标准灯的方法进行的仔细分析表明,只有一种技术(不适用于我们的情况)没有重大的辐射误差。我们提供了改进的Caltech高温计仪器的详细说明,以及其精确到±5%的绝对光谱辐射率校准程序。我们使用指定的中心区域,即相对于NIST可追踪的钨带灯进行交叉校准的,盘绕的卤素钨丝灯丝的0.7倍缩小图像。我们给出了交叉校准的结果以及对光学装置,数据采集和处理的描述。我们描述了一种程序,以表征放大的光电探测器的静态和动态响应之间的差异,从而为来自电击实验的光谱辐射历史记录提供了随时间变化的光电二极管校正因子。我们通过在单晶NaCl和MgO上的实际冲击温度实验验证了改进的Caltech高温计的正确操作,并且与这些物质的文献数据非常吻合。最后,总结了使用大功率线圈状卤素钨丝辐照标准灯对光纤冲击温度高温计进行无差错校准的最基本要求。

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