利用磁悬液传播普朗克常数实现千克的真空-空气质量校准系统的进展。

Eric C Benck, Corey Stambaugh, Edward C Mulhern, Patrick J Abbott, Zeina J Kubarych
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引用次数: 0

摘要

千克是国际单位制(SI)中的质量单位,自1889年以来一直被定义为国际原型千克(IPK)的质量。在未来,千克的新定义将通过固定普朗克常数的值来实现。质量单位的新定义必然会出现在真空环境中,因此美国国家标准与技术研究所(NIST)正在开发一种质量校准系统,可以将空气中的千克伪像与真空环境中的千克进行直接比较。该设备使用磁性悬浮液将空气中的千克与真空中的高精度质量平衡相耦合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Progress on vacuum-to-air mass calibration system using magnetic suspension to disseminate the Planck-constant realized kilogram.

Progress on vacuum-to-air mass calibration system using magnetic suspension to disseminate the Planck-constant realized kilogram.

Progress on vacuum-to-air mass calibration system using magnetic suspension to disseminate the Planck-constant realized kilogram.

Progress on vacuum-to-air mass calibration system using magnetic suspension to disseminate the Planck-constant realized kilogram.

The kilogram is the unit of mass in the International System of units (SI) and has been defined as the mass of the International Prototype Kilogram (IPK) since 1889. In the future, a new definition of the kilogram will be realized by fixing the value of the Planck constant. The new definition of the unit of mass will occur in a vacuum environment by necessity, so the National Institute of Standards and Technology (NIST) is developing a mass calibration system in which a kilogram artefact in air can be directly compared with a kilogram realized in a vacuum environment. This apparatus uses magnetic suspension to couple the kilogram in air to a high accuracy mass balance in vacuum.

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