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两种独立气压调制折射计的短期压力评估性能。

The Short-Term Performances of Two Independent Gas Modulated Refractometers for Pressure Assessments.

机构信息

Department of Physics, Umeå University, SE-901 87 Umeå, Sweden.

Measurement Science and Technology, RISE Research Institutes of Sweden, SE-501 15 Borås, Sweden.

出版信息

Sensors (Basel). 2021 Sep 18;21(18):6272. doi: 10.3390/s21186272.

Abstract

Refractometry is a powerful technique for pressure assessments that, due to the recent redefinition of the SI system, also offers a new route to realizing the SI unit of pressure, the Pascal. Gas modulation refractometry (GAMOR) is a methodology that has demonstrated an outstanding ability to mitigate the influences of drifts and fluctuations, leading to long-term precision in the 10-7 region. However, its short-term performance, which is of importance for a variety of applications, has not yet been scrutinized. To assess this, we investigated the short-term performance (in terms of precision) of two similar, but independent, dual Fabry-Perot cavity refractometers utilizing the GAMOR methodology. Both systems assessed the same pressure produced by a dead weight piston gauge. That way, their short-term responses were assessed without being compromised by any pressure fluctuations produced by the piston gauge or the gas delivery system. We found that the two refractometer systems have a significantly higher degree of concordance (in the 10-8 range at 1 s) than what either of them has with the piston gauge. This shows that the refractometry systems under scrutiny are capable of assessing rapidly varying pressures (with bandwidths up to 2 Hz) with precision in the 10-8 range.

摘要

折射法是一种强大的压力评估技术,由于最近对国际单位制(SI)的重新定义,它也为实现压力的 SI 单位——帕斯卡提供了新的途径。气体调制折射法(GAMOR)是一种已经证明具有出色能力的方法,可以减轻漂移和波动的影响,从而实现 10-7 区域的长期精度。然而,其短期性能(对各种应用很重要)尚未受到审查。为了评估这一点,我们研究了两种类似但独立的双法布里-珀罗腔折射计利用 GAMOR 方法的短期性能(精度方面)。这两个系统都评估了由重量活塞压力计产生的相同压力。这样,它们的短期响应就不会受到活塞压力计或气体输送系统产生的任何压力波动的影响。我们发现,这两个折射计系统具有更高的一致性(在 1 秒时达到 10-8 范围),而不是它们中的任何一个与活塞压力计的一致性。这表明,受审查的折射计系统能够以 10-8 范围内的精度评估带宽高达 2 Hz 的快速变化压力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d188/8469679/42ef54e05244/sensors-21-06272-g001.jpg

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