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用低温扭摆测量引力常数G 。

A measurement of G with a cryogenic torsion pendulum.

作者信息

Newman Riley, Bantel Michael, Berg Eric, Cross William

机构信息

Department of Physics, University of California Irvine, Irvine, CA 92697-4575, USA

Department of Physics, University of California Irvine, Irvine, CA 92697-4575, USA ExoAnalytic Solutions Inc., Mission Viejo, CA 92692, USA.

出版信息

Philos Trans A Math Phys Eng Sci. 2014 Oct 13;372(2026). doi: 10.1098/rsta.2014.0025. Epub 2014 Sep 8.

Abstract

A measurement of Newton's gravitational constant G has been made with a cryogenic torsion pendulum operating below 4 K in a dynamic mode in which G is determined from the change in torsional period when a field source mass is moved between two orientations. The source mass was a pair of copper rings that produced an extremely uniform gravitational field gradient, whereas the pendulum was a thin fused silica plate, a combination that minimized the measurement's sensitivity to error in pendulum placement. The measurement was made using an as-drawn CuBe torsion fibre, a heat-treated CuBe fibre, and an as-drawn Al5056 fibre. The pendulum operated with a set of different large torsional amplitudes. The three fibres yielded high Q-values: 82 000, 120 000 and 164 000, minimizing experimental bias from fibre anelasticity. G-values found with the three fibres are, respectively: {6.67435(10),6.67408(15),6.67455(13)}×10(-11) m(3) kg(-1) s(-2), with corresponding uncertainties 14, 22 and 20 ppm. Relative to the CODATA2010 G-value, these are higher by 77, 37 and 107 ppm, respectively. The unweighted average of the three G-values, with the unweighted average of their uncertainties, is 6.67433(13)×10(-11) m(3) kg(-1) s(-2) (19 ppm).

摘要

利用一个在4K以下动态模式下运行的低温扭摆测量了牛顿引力常数G。在这种模式下,当一个场源质量在两个方向之间移动时,通过扭转周期的变化来确定G。源质量是一对铜环,它们产生了极其均匀的引力场梯度,而摆锤是一块薄的熔融石英板,这种组合将测量对摆锤放置误差的灵敏度降至最低。测量使用了一根拉制态的铜铍扭转纤维、一根经过热处理的铜铍纤维和一根拉制态的Al5056纤维。摆锤在一组不同的大扭转振幅下运行。这三根纤维产生了高Q值:82000、120000和164000,将纤维滞弹性引起的实验偏差降至最低。用这三根纤维得到的G值分别为:{6.67435(10)、6.67408(15)、6.67455(13)}×10^(-11) m³ kg⁻¹ s⁻²,相应的不确定度分别为14、22和20 ppm。相对于CODATA2010的G值,这些值分别高出77、37和107 ppm。这三个G值的未加权平均值及其未加权平均不确定度为6.67433(13)×10^(-11) m³ kg⁻¹ s⁻² (19 ppm)。

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