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Reconciling Planck constant determinations via watt balance and enriched-silicon measurements at NRC Canada

机译:通过NRC加拿大通过功率平衡和富硅测量调和普朗克常数

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摘要

The next revision to the International System of Units will emphasize the relationship between the base units (kilogram, metre, second, ampere, kelvin, candela and mole) and fundamental constants of nature (the speed of light, c, the Planck constant, h, the elementary charge, e, the Boltzmann constant, k_(B), the Avogadro constant, N_(A), etc). The redefinition cannot proceed without consistency between two complementary metrological approaches to measuring h: a 'physics' approach, using watt balances and the equivalence principle between electrical and mechanical force, and a 'chemistry' approach that can be viewed as determining the mass of a single atom of silicon. We report the first high precision physics and chemistry results that agree within 12 parts per billion: h(watt balance) velence 6.626 070 63(43) X 10~(-34) J s and h(silicon) velence 6.626070 55(21) X 10~(-34) J s. When combined with values determined by other metrology laboratories, this work helps to constrain our knowledge of h to 20 parts per billion, moving us closer to a redefinition of the metric system used around the world.
机译:国际单位制的下一个修订版将强调基本单位(千克,米,秒,安培,开尔文,坎德拉和摩尔)与自然的基本常数(光速,c,普朗克常数,h)之间的关系。 ,基本电荷e,玻尔兹曼常数k_(B),阿伏伽德罗常数N_(A)等)。如果没有两种互补的计量方法来测量h,那么重新定义就不可能继续进行:一种使用瓦特平衡和电动力与机械力的等效原理的“物理”方法,以及一种可以看作是确定一个质量的“化学”方法。硅单原子。我们报告的第一个高精度物理和化学结果在十亿分之十二以内:h(瓦特平衡)velence 6.626 070 63(43)X 10〜(-34)J s和h(硅)velence 6.626070 55(21) X 10〜(-34)J s。当与其他计量实验室确定的值结合使用时,这项工作有助于将h的知识限制为十亿分之20,这使我们更接近于重新定义世界各地使用的度量系统。

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