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Gravimetry for watt balance measurements

机译:重量法用于功率平衡测量

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摘要

In a watt balance (WB) the gravity on a known mass is used in the determination of the value of the Planck constant with a precision of <2 × 10~(-41) J s. To attain this precision the gravity value at the centre of a mass within the WB must be known with a relative uncertainty of <1 × 10~(-8). This necessitates laboratory gravity mapping in three dimensions, the establishment close to the WB of a gravity reference station, and modelling of the ties to the centre-of-mass location. The self-gravity of the WB must be accounted for, and since WB measurements run over several weeks, corrections for tidal, polar motion and atmospheric effects must be included. We describe the gravimetry carried out at the National Research Council of Canada WB laboratory, and include a discussion of past gravity variations in the vicinity of the WB, which suggest that seasonal variation may be of sufficient magnitude to affect results obtained with the balance.
机译:在瓦特天平(WB)中,已知质量上的重力用于确定普朗克常数的值,精度为<2×10〜(-41)J s。为了达到这种精度,必须知道WB内部质心的重力值,其相对不确定度<1×10〜(-8)。这需要在三个维度上进行实验室重力映射,靠近重力参考站WB的位置以及对与质心位置的联系进行建模的建模。必须考虑WB的自重,并且由于WB测量要进行数周,因此必须包括潮汐,极移和大气影响的校正。我们描述了在加拿大国家研究委员会WB实验室进行的重量分析,并讨论了WB附近过去的重力变化,这表明季节性变化可能会影响到平衡所获得的结果。

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