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Methods for aligning the NIST watt-balance

机译:调整NIST功率平衡的方法

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The NIST watt-balance has been developed to explore the possibility of monitoring the stability of the mass standard by means of electrical quantum standards. The mass standard is the last basic standard that is kept as an artifact. The watt-balance uses a movable coil in a radial magnetic field to compare the mechanical energy required to lift a kilogram mass in earth's gravity with the electrical energy required to move the coil the same distance in a magnetic field. The electrical energy is monitored in terms of quantized Hall resistance and Josephson junction voltage standards. The accuracy of this experiment depends on a large number of factors. Among them are the ability to align the apparatus so that the movable coil and magnet are coaxial and aligned to the local vertical. Misalignments of the coil and magnet result in forces and torques on the coil. The coil is suspended like a pendulum and responds easily to these torques and horizontal forces. This paper describes a computer program that was written to calculate the shape of the magnetic field and the torques and forces on the movable coil that result from any misalignments. This information is being used to develop an alignment procedure that minimizes misalignments and the errors they cause. This program has enhanced our understanding of the cause of torques about the vertical axis on the coil and the dependence of this torque on the magnetic field gradient.
机译:NIST功率平衡已被开发出来,以探索通过电子量子标准监测质量标准稳定性的可能性。质量标准是作为人工制品保留的最后一个基本标准。瓦特平衡器在径向磁场中使用可移动线圈,以将在地球重力中举起一公斤质量所需的机械能与在磁场中移动相同距离的线圈所需的电能进行比较。根据量化的霍尔电阻和约瑟夫森结电压标准监控电能。该实验的准确性取决于许多因素。其中包括对齐设备的能力,以使可移动线圈和磁体同轴并与局部垂直位置对齐。线圈和磁体的未对准会在线圈上产生作用力和扭矩。线圈像钟摆一样悬挂,可以轻松响应这些扭矩和水平力。本文介绍了一种计算机程序,编写该程序可计算磁场的形状以及由于未对准而引起的可移动线圈上的转矩和力。此信息用于开发对齐过程,以最大程度地减少未对齐及其引起的错误。该程序使我们更加了解线圈上绕垂直轴的转矩的原因以及该转矩对磁场梯度的依赖性。

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