Updates on the Tsinghua Tabletop Kibble Balance

Fuente: arXiv
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Main Authors: Li, Shisong, Ma, Yongchao, Ma, Kang, Liu, Weibo, Li, Nanjia, Liu, Xiaohu, Peng, Lisha, Zhao, Wei, Huang, Songling, Yu, Xinjie
Format: Preprint
Published: 2024
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_version_ 1866916528342958080
author Li, Shisong
Ma, Yongchao
Ma, Kang
Liu, Weibo
Li, Nanjia
Liu, Xiaohu
Peng, Lisha
Zhao, Wei
Huang, Songling
Yu, Xinjie
author_facet Li, Shisong
Ma, Yongchao
Ma, Kang
Liu, Weibo
Li, Nanjia
Liu, Xiaohu
Peng, Lisha
Zhao, Wei
Huang, Songling
Yu, Xinjie
contents With the adoption of the revised International System of Units (SI), the Kibble balance has become a pivotal instrument for mass calibrations against the Planck constant, $h$. One of the major focuses in the Kibble balance community is prioritizing experiments that achieve both high accuracy and compactness. The Tsinghua tabletop Kibble balance experiment seeks to develop a compact, high-precision, user-friendly, cost-effective, and open-hardware apparatus for mass realization, specifically within the kilogram range. This paper reports on the progress of the Tsinghua tabletop Kibble balance project over the past two years. Various aspects of the Tsinghua tabletop system, including electrical, magnetic, mechanical, and optical components, are summarized. Key achievements, such as the construction and characterization of the magnet system, determination of absolute gravitational acceleration, investigation of a capacitor-sensor-based weighing unit, and development of a high-precision current source, are presented to provide a comprehensive understanding of the experiment's status.
format Preprint
id arxiv_https___arxiv_org_abs_2412_12521
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Updates on the Tsinghua Tabletop Kibble Balance
Li, Shisong
Ma, Yongchao
Ma, Kang
Liu, Weibo
Li, Nanjia
Liu, Xiaohu
Peng, Lisha
Zhao, Wei
Huang, Songling
Yu, Xinjie
Instrumentation and Detectors
With the adoption of the revised International System of Units (SI), the Kibble balance has become a pivotal instrument for mass calibrations against the Planck constant, $h$. One of the major focuses in the Kibble balance community is prioritizing experiments that achieve both high accuracy and compactness. The Tsinghua tabletop Kibble balance experiment seeks to develop a compact, high-precision, user-friendly, cost-effective, and open-hardware apparatus for mass realization, specifically within the kilogram range. This paper reports on the progress of the Tsinghua tabletop Kibble balance project over the past two years. Various aspects of the Tsinghua tabletop system, including electrical, magnetic, mechanical, and optical components, are summarized. Key achievements, such as the construction and characterization of the magnet system, determination of absolute gravitational acceleration, investigation of a capacitor-sensor-based weighing unit, and development of a high-precision current source, are presented to provide a comprehensive understanding of the experiment's status.
title Updates on the Tsinghua Tabletop Kibble Balance
topic Instrumentation and Detectors
url https://arxiv.org/abs/2412.12521