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BIPM direct on-site Josephson voltage standard comparisons: 20 years of results

机译:BIPM直接进行现场约瑟夫森电压标准比较:20年的结果

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摘要

The discovery of the Josephson effect has for the first time given national metrology institutes (NMIs) the possibility of maintaining voltage references which are stable in time. In addition, the introduction in 1990 of a conventional value for the Josephson constant, K_(J-90), has greatly improved world-wide consistency among representations of the volt. For 20 years, the Bureau International des Poids et Mesures (BIPM) has conducted an ongoing, direct, on-site key comparison of Josephson voltage standards among NMIs under the denominations BIPM.EM-K10.a (1 V) and BIPM.EM-K10.b (10 V) in the framework of the mutual recognition arrangement (CIPM MRA). The results of 41 comparisons illustrate the consistency among primary voltage standards and have demonstrated that a relative total uncertainty of a few parts in 10~(10) is achievable if a few precautions are taken with regard to the measurement set-up. Of particular importance are the grounding, efficient filters and high insulation resistance of the measurement leads, and clean microwave distribution along the propagation line to the Josephson array. This paper reviews the comparison scheme and technical issues that need to be taken into account to achieve a relative uncertainty at the level of a few parts in 10~(10) or even a few parts in 10~(11) in the best cases.
机译:约瑟夫森效应的发现首次为国家计量机构(NMI)提供了保持时间基准电压稳定的可能性。此外,1990年引入了约瑟夫森常数K_(J-90)的常规值,极大地改善了伏特表示在世界范围内的一致性。 20年来,国际局和实物测量局(BIPM)对NMI中以BIPM.EM-K10.a(1 V)和BIPM.EM命名的约瑟夫森电压标准进行了持续,直接,现场的关键比较。 -K10.b(10 V)在相互认可协议(CIPM MRA)的框架内。 41次比较的结果说明了一次电压标准之间的一致性,并表明,如果在测量设置上采取一些预防措施,则可以达到10〜(10)中几个部分的相对总不确定性。特别重要的是测量导线的接地,有效的滤波器和高绝缘电阻,以及沿传播线到约瑟夫森阵列的干净的微波分布。本文回顾了比较方案和技术问题,在最佳情况下,要在10〜(10)的几分之一甚至10〜(11)的几分之一的水平上实现相对不确定性就必须考虑。

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