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利用拟球形声学共振器测定玻尔兹曼常数。

Determination of the Boltzmann constant using a quasi-spherical acoustic resonator.

机构信息

Laboratoire Commun de Métrologie LNE-CNAM (LCM), 61 rue du Landy, F 93210 La Plaine Saint-Denis, France.

出版信息

Philos Trans A Math Phys Eng Sci. 2011 Oct 28;369(1953):4014-27. doi: 10.1098/rsta.2011.0197.

Abstract

The paper reports a new experiment to determine the value of the Boltzmann constant, k(B)=1.3806477(17)×10(-23) J K(-1), with a relative standard uncertainty of 1.2 parts in 10(6). k(B) was deduced from measurements of the velocity of sound in argon, inside a closed quasi-spherical cavity at a temperature of the triple point of water. The shape of the cavity was achieved using an extremely accurate diamond turning process. The traceability of temperature measurements was ensured at the highest level of accuracy. The volume of the resonator was calculated from measurements of the resonance frequencies of microwave modes. The molar mass of the gas was determined by chemical and isotopic composition measurements with a mass spectrometer. Within combined uncertainties, our new value of k(B) is consistent with the 2006 Committee on Data for Science and Technology (CODATA) value: (k(B)(new)/k(B_CODATA)-1)=-1.96×10(-6), where the relative uncertainties are u(r)(k(B)(new))=1.2×10(-6) and u(r)(k(B_CODATA))=1.7×10(-6). The new relative uncertainty approaches the target value of 1×10(-6) set by the Consultative Committee on Thermometry as a precondition for redefining the unit of the thermodynamic temperature, the kelvin.

摘要

本文报道了一项新的实验,旨在确定玻尔兹曼常数 k(B)=1.3806477(17)×10(-23) J K(-1) 的值,其相对标准不确定度为 1.2 parts in 10(6)。k(B)是通过测量在接近水的三相点温度下处于封闭的拟球型腔体内的氩气声速而推断得出的。该型腔的形状是通过极其精确的钻石车削工艺实现的。温度测量的可追溯性在最高精度级别得到了保证。通过测量微波模式的共振频率,从谐振器的体积计算得出。气体的摩尔质量通过质谱仪进行化学和同位素组成测量来确定。在合并不确定度范围内,我们的新 k(B)值与 2006 年科学和技术数据委员会 (CODATA) 值一致:(k(B)(new)/k(B_CODATA)-1)=-1.96×10(-6),其中相对不确定度为 u(r)(k(B)(new))=1.2×10(-6) 和 u(r)(k(B_CODATA))=1.7×10(-6)。新的相对不确定度接近作为重新定义热力学温度单位开尔文的前提条件的测温咨询委员会设定的 1×10(-6)目标值。

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