Multispectrum rotational states distribution thermometry: application to the 3ν1 + ν3 band of carbon dioxide

Author:

Gotti RORCID,Lamperti MORCID,Gatti DORCID,Wójtewicz S,Puppe T,Mayzlin Y,Alsaif B,Robinson-Tait J,Rohde F,Wilk R,Leisching P,Kaenders W G,Laporta P,Marangoni MORCID

Abstract

Abstract In this paper we propose multispectrum rotational states distribution thermometry as an optical method for primary thermometry. It relies on a global fitting of multiple absorption lines of the same band at different pressures. The approach allows leveraging both the temperature-dependent Doppler width and the temperature-dependent distribution of line intensities across the ro-vibrational band. We provide a proof-of-principle demonstration of the approach on the 3ν 1 + ν 3 band of CO2, for which several accurate line-strength models of both theoretical and experimental origin are available for the global fitting. Our experimental conditions do not allow to test the methodology beyond a combined uncertainty of 530 ppm, but the comparative analysis between different line-strength models shows promise to reduce the error budget to few tens of ppm. As compared to Doppler-broadening thermometry, the approach is advantageous to mitigate systematic errors induced by a wrong modelling of absorption line-shapes and to reduce, for a given experimental dataset, the statistical uncertainty by a factor of 2. When applied in a reverse way, i.e. using a gas of known temperature, the approach becomes a stringent testbed for the accuracy of the adopted line-strength model.

Funder

Empatia@Lecco

Polish Ministry of Science and Higher Education program “Mobility Plus”

Politecnico di Milano and Abdullah University of Science and Technology

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference31 articles.

1. The CODATA 2017 values of h, e, k, and NA for the revision of the SI;Newell;Metrologia,2018

2. The Boltzmann project;Fischer;Metrologia,2018

3. Determinations of the Boltzmann constant;Pitre;C. R. Physique,2019

4. The kelvin redefined;Machin;Meas. Sci. Technol.,2018

5. Acoustic gas thermometry;Moldover;Metrologia,2014

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