Title :
New determination of the Boltzmann constant with an acoustic method
Author :
Pitre, L. ; Sparasci, F. ; Guillou, A. ; Truong, D. ; Hermier, Y. ; Himbert, M.E.
Author_Institution :
Lab. Commun de Metrol., LNE-CNAM, France
Abstract :
There is currently great interest in the international metrology community for new accurate determinations of the Boltzmann constant kB, with a view to a new definition of the unit of thermodynamic temperature, the kelvin. Indeed, k is related to the quantum of energy kBT, where T is the thermodynamic temperature. The value of the Boltzmann constant can be obtained from measurements of the velocity of the sound in a noble gas. In the method described here, the experiment has been performed in a closed spherical cavity. To obtain an accurate value for kB, all the parameters of the experiment (gas purity, static pressure, temperature of the device, exact shape of the cavity, etc.) have been carefully controlled. Correction terms have been computed using carefully validated theoretical models, and applied to the acoustic signals. We report on two sets of isothermal acoustic measurements yielding to values for kB which differ by 0.3 part in 106, and have an average value of kB =(1.380 647 8 + 0.000 003 1-0.000 001 7) × 10-23 (+ -lstd).
Keywords :
acoustic measurement; acoustic wave velocity measurement; constants; inert gases; thermodynamics; Boltzmann constant determination; acoustic signal; isothermal acoustic measurement; noble gas; spherical cavity; thermodynamic temperature; velocity measurement; Acoustic devices; Acoustic measurements; Isothermal processes; Kelvin; Metrology; Pressure control; Shape control; Temperature control; Thermodynamics; Velocity measurement;
Conference_Titel :
Precision Electromagnetic Measurements (CPEM), 2010 Conference on
Conference_Location :
Daejeon
Print_ISBN :
978-1-4244-6795-2
DOI :
10.1109/CPEM.2010.5544260