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Towards the redefinition of the kilogram: a measurement of the Planck constant using the NPL Mark II watt balance

机译:走向公斤的重新定义:使用NPL Mark II瓦特天平测量普朗克常数

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摘要

After the elimination of significant mechanical problems, the NPL Mark II moving-coil watt balance made an initial series of measurements in the period from October 2006 to March 2007. Incremental improvements were made to the apparatus in the period from June 2007 to November 2008 and measurements of the Planck constant h were made up to June 2009, with the aim of providing further information to the ongoing efforts to redefine the SI kilogram in terms of a fixed value of the Planck constant. The apparatus was sold to NRC-INMS in early 2009 and was dismantled and shipped to Canada in the period between June and August 2009. In June 2009, just prior to the shipment, a possible source of significant type-B uncertainty in the mass/force exchange was discovered. There was insufficient time to fully investigate and correct the effect so a component has been added to the uncertainty budget to account for its estimated magnitude. The standard uncertainty of the apparatus, without allowance for the mass/force exchange problem, is estimated to be 36 nW W~(-1), which represents an improvement of almost a factor of two from the previously reported uncertainty of 66 nW W~(-1), but, allowing for the problem, the uncertainty increases to 200 nW W~(-1). Further work, once the apparatus is rebuilt in Canada, should eliminate the source of the added uncertainty. The value of h calculated from the measurements made from 2006 to 2009 is 6.626 071 23(133) X 10~(-34) J s, which represents a change of 43 nW W~(-1) from the value reported in 2007. The corresponding value of the Avogadro constant, N_(A), is 6.022 13978(120) X 10~(23) mol~(-1).
机译:消除了重大的机械问题后,NPL Mark II动圈式瓦特天平在2006年10月至2007年3月进行了一系列初始测量。从2007年6月至2008年11月,对设备进行了逐步改进。普朗克常数h的测量截止到2009年6月,目的是为根据普朗克常数的固定值重新定义SI千克的正在进行的工作提供进一步的信息。该仪器于2009年初出售给NRC-INMS,并于2009年6月至2009年8月期间拆解并运往加拿大。2009年6月,即在装运之前,质量/发现了力交换。没有足够的时间来充分研究和纠正影响,因此已将不确定性预算中增加了一个组成部分以说明其估计量。在不考虑质量/力交换问题的情况下,设备的标准不确定度估计为36 nW W〜(-1),与先前报道的66 nW W〜的不确定度相比,几乎提高了两倍。 (-1),但是考虑到问题,不确定性增加到200 nW W〜(-1)。一旦在加拿大重建了设备,进一步的工作应消除增加的不确定性的根源。根据2006年至2009年的测量值计算出的h值为6.626 071 23(133)X 10〜(-34)J s,与2007年报告的值相比,变化了43 nW W〜(-1)。阿伏伽德罗常数的相应值N_(A)为6.022 13978(120)X 10〜(23)mol〜(-1)。

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