Tiesinga Eite, Mohr Peter J, Newell David B, Taylor Barry N
Joint Quantum Institute and Joint Center for Quantum Information and Computer Science, College Park, Maryland 20742, USA.
National Institute of Standards and Technology, Gaithersburg, Maryland 20899, USA.
J Phys Chem Ref Data. 2021 Sep;50(3):033105. doi: 10.1063/5.0064853. Epub 2021 Sep 23.
We report the 2018 self-consistent values of constants and conversion factors of physics and chemistry recommended by the Committee on Data of the International Science Council. The recommended values can also be found at physics.nist.gov/constants. The values are based on a least-squares adjustment that takes into account all theoretical and experimental data available through 31 December 2018. A discussion of the major improvements as well as inconsistencies within the data is given. The former include a decrease in the uncertainty of the dimensionless fine-structure constant and a nearly two orders of magnitude improvement of particle masses expressed in units of kg due to the transition to the revised International System of Units (SI) with an exact value for the Planck constant. Further, because the elementary charge, Boltzmann constant, and Avogadro constant also have exact values in the revised SI, many other constants are either exact or have significantly reduced uncertainties. Inconsistencies remain for the gravitational constant and the muon magnetic-moment anomaly. The proton charge radius puzzle has been partially resolved by improved measurements of hydrogen energy levels.
我们报告了国际科学理事会数据委员会推荐的2018年物理和化学常数及转换因子的自洽值。这些推荐值也可在physics.nist.gov/constants网站上找到。这些值基于最小二乘法调整,该调整考虑了截至2018年12月31日所有可用的理论和实验数据。文中给出了数据方面主要改进以及不一致之处的讨论。前者包括无量纲精细结构常数不确定性的降低,以及由于向具有普朗克常数精确值的修订国际单位制(SI)过渡,以千克为单位表示的粒子质量的不确定性提高了近两个数量级。此外,由于基本电荷、玻尔兹曼常数和阿伏伽德罗常数在修订后的SI中也具有精确值,许多其他常数要么是精确的,要么其不确定性已显著降低。引力常数和μ子磁矩反常仍存在不一致之处。通过对氢能级的改进测量,质子电荷半径难题已得到部分解决。