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首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >Low uncertainty Boltzmann constant determinations and the kelvin redefinition
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Low uncertainty Boltzmann constant determinations and the kelvin redefinition

机译:低不确定性玻尔兹曼常数测定和开尔文重新定义

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At its 25th meeting, the General Conference on Weights and Measures (CGPM) approved Resolution 1 'On the future revision of the International System of Units, the SI', which sets the path towards redefinition of four base units at the next CGPM in 2018. This constitutes a decisive advance towards the formal adoption of the new SI and its implementation. Kilogram, ampere, kelvin and mole will be defined in terms of fixed numerical values of the Planck constant, elementary charge, Boltzmann constant and Avogadro constant, respectively. The effect of the new definition of the kelvin referenced to the value of the Boltzmann constant k is that the kelvin is equal to the change of thermodynamic temperature T that results in a change of thermal energy kT by 1.380 65 x 10(-23) J. A value of the Boltzmann constant suitable for defining the kelvin is determined by fundamentally different primary thermometers such as acoustic gas thermometers, dielectric constant gas thermometers, noise thermometers and the Doppler broadening technique. Progress to date of the measurements and further perspectives are reported. Necessary conditions to be met before proceeding with changing the definition are given. The consequences of the new definition of the kelvin on temperature measurement are briefly outlined.
机译:大会在其第25次会议上批准了决议1``关于国际单位制的未来修订''的决议1,该决议为2018年下一届CGPM重新定义四个基本单位奠定了基础这是正式采用新SI及其实施的决定性进步。千克,安培,开尔文和摩尔分别以普朗克常数,基本电荷,玻尔兹曼常数和阿伏伽德罗常数的固定数值定义。开尔文的新定义参考玻尔兹曼常数k的影响是开尔文等于热力学温度T的变化,导致热能kT改变1.380 65 x 10(-23)J适用于定义开尔文的玻尔兹曼常数的值由根本不同的主温度计(例如声波气体温度计,介电常数气体温度计,噪声温度计和多普勒展宽技术)确定。报告了迄今为止的测量进展和进一步的观点。给出了在继续更改定义之前要满足的必要条件。简要概述了开尔文新定义对温度测量的影响。

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