Literature DB >> 29332954

Determination of the Boltzmann constant with cylindrical acoustic gas thermometry: new and previous results combined.

X J Feng1, J T Zhang1, H Lin1, K A Gillis2, J B Mehl3, M R Moldover2, K Zhang1, Y N Duan1.   

Abstract

We report a new determination of the Boltzmann constant kB using a cylindrical acoustic gas thermometer. We determined the length of the copper cavity from measurements of its microwave resonance frequencies. This contrasts with our previous work (Zhang et al 2011 Int. J. Thermophys.32 1297, Lin et al 2013 Metrologia50 417, Feng et al 2015 Metrologia52 S343) that determined the length of a different cavity using two-color optical interferometry. In this new study, the half-widths of the acoustic resonances are closer to their theoretical values than in our previous work. Despite significant changes in resonator design and the way in which the cylinder length is determined, the value of kB is substantially unchanged. We combined this result with our four previous results to calculate a global weighted mean of our kB determinations. The calculation follows CODATA's method (Mohr and Taylor 2000 Rev. Mod. Phys. 72 351) for obtaining the weighted mean value of kB that accounts for the correlations among the measured quantities in this work and in our four previous determinations of kB. The weighted mean k̂B is 1.380 6484(28) × 10-23 J K-1 with the relative standard uncertainty of 2.0 × 10-6. The corresponding value of the universal gas constant is 8.314 459(17) J K-1 mol-1 with the relative standard uncertainty of 2.0 × 10-6.

Entities:  

Keywords:  Boltzmann constant; acoustic resonance; cylindrical acoustic gas thermometry; microwave resonance

Year:  2017        PMID: 29332954      PMCID: PMC5761683          DOI: 10.1088/1681-7575/aa7b4a

Source DB:  PubMed          Journal:  Metrologia        ISSN: 0026-1394            Impact factor:   3.157


  2 in total

1.  Advances in thermometry.

Authors:  Michael R Moldover; Weston L Tew; Howard W Yoon
Journal:  Nat Phys       Date:  2016-01-07       Impact factor: 20.034

2.  Energy accommodation coefficient extracted from acoustic resonator experiments.

Authors:  Felix Sharipov; Michael R Moldover
Journal:  J Vac Sci Technol A       Date:  2016-11-02       Impact factor: 2.427

  2 in total

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