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Humidity coefficient correction in the calculation equations of air refractive index by He-Ne laser based on phase step interferometry

机译:基于相步进干涉法的氦氖激光器空气折射率计算方程中的湿度系数校正

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摘要

The refractive index of air (RIA) is an important parameter in precision measurement. The revisions to Edlen's equations by Boensch and Potulski [Metrologia 35, 133 (1998)] are mostly used to calculate the RIA at present. Since the humidity correction coefficients in the formulas were performed with four wavelengths of a Cd-114 lamp (644.0, 508.7, 480.1, and 467.9 nm) and at the temperature range of 19.6 degrees C-20.1 degrees C, the application is restricted when an He-Ne laser is used as the light source, which is mostly applied in optical precision measurement, and the environmental temperature is far away from 20 degrees C as well. To solve this problem, a measurement system based on phase step interferometry for measuring the effect of the humidity to the RIA is presented, and a corresponding humidity correction equation is derived. The analysis and comparison results show that the uncertainty of the presented equation is better than that of Boensch and Potulski's. It is more suitable in present precision measurements by He-Ne laser, and the application temperature range extends to 14.6 degrees C-24.0 degrees C as well. (C) 2015 Optical Society of America
机译:空气的折射率(RIA)是精密测量中的重要参数。 Boensch和Potulski [Metrologia 35,133(1998)]对Edlen方程的修正目前主要用于计算RIA。由于公式中的湿度校正系数是使用Cd-114灯的四种波长(644.0、508.7、480.1和467.9 nm)并在19.6 C-20.1°C的温度范围内执行的,因此当氦氖激光器用作光源,主要用于光学精度测量,环境温度也远离20摄氏度。为了解决这个问题,提出了一种基于相位步进干涉法的测量系统,用于测量湿度对RIA的影响,并推导了相应的湿度校正方程。分析和比较结果表明,所提出方程的不确定性要优于Boensch和Potulski的不确定性。它更适合用于He-Ne激光器的当前精度测量,并且应用温度范围也扩展到14.6摄氏度至24.0摄氏度。 (C)2015年美国眼镜学会

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