论文标题

根据Ciddor方程来测量空气折射率的自动单元,并使用直接干涉测量方法进行验证

Automatic unit for measuring refractive index of air based on Ciddor equation and its verification using direct interferometric measurement method

论文作者

Hucl, V., Cizek, M., Hrabina, J., Mikel, B., Rerucha, S., Buchta, Z., Jedlicka, P., Lesundak, A., Oulehla, J., Mrna, L., Sarbort, M., Smid, R., Lazar, J., Cip, O.

论文摘要

在扫描探针中,显微镜激光干涉仪通常用于用计量学可追溯性测量探针尖端的位置。由于大多数AFM设置旨在在标准大气条件下工作,因此空气折射率的变化相对较为1.0e-4的长度值的影响。为了获得更好的精度,必须连续监控空气的折射率,并且必须使用其瞬时值来补偿所有干涉轴测量的长度。在介绍的工作中,我们开发了一种电子单元的新概念,该概念能够根据环境大气条件的测量来监视空气的折射率:温度,湿度,空气压力和二氧化碳浓度。数据处理基于Ciddor方程,用于计算空气的折射率。该设备的重要优点是电子设备的功耗非常低,因此该设备仅对测量环境造成可忽略的温度影响。验证了单位采用的间接测量方法的准确性。我们基于放置在激光干涉仪的测量组处的可撤离单元的直接测量空气折射率的直接方法进行了测试的准确性。介绍了用于验证的实验设置以及一组描述性能的测量值。电子单元的产生精度相对落到4.1E-7。

In scanning probe microscopy laser interferometers are usually used for measuring the position of the probe tip with a metrological traceability. As the most of the AFM setups are designed to work under standard atmospheric conditions the changes of the refractive index of air have an influence to measured values of the length with 1.0e-4 relatively. In order to achieve better accuracies the refractive index of air has to be monitored continuously and its instantaneous value has to be used for compensating the lengths measured by all of the interferometric axes. In the presented work we developed a new concept of an electronic unit which is able to monitor the refractive index of air on basis of measurement of ambient atmospheric conditions: temperature, humidity, pressure of the air and the CO2 concentration. The data processing is based on Ciddor equation for calculating the refractive index of air. The important advantage of the unit is a very low power consumption of the electronics so the unit causes only negligible temperature effects to the measured environment. The accuracy of the indirect measuring method employed by the unit was verified. We tested the accuracy in comparison with a direct method of measuring refractive index of air based on an evacuatable cell placed at the measuring arm of a laser interferometer. An experimental setup used for verification is presented together with a set of measurements describing the performance. The resulting accuracy of the electronic unit falls to the 4.1e-7 relatively.

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