首页> 外文期刊>Metrologia: International Journal of Scientific Metrology: = Internationale Zeitschrift fur Wissenschaftliche Metrologie: = Journal International de Metrologie Scientifique >A novel two-terminal-pair pulse-driven Josephson impedance bridge linking a 10 nF capacitance standard to the quantized Hall resistance
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A novel two-terminal-pair pulse-driven Josephson impedance bridge linking a 10 nF capacitance standard to the quantized Hall resistance

机译:一种新型的双端子对脉冲驱动约瑟夫森阻抗电桥,将 10 nF 电容标准与量化霍尔电阻连接起来

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摘要

In this paper the realization of a two-terminal-pair impedance bridge based on pulse-driven Josephson arrays will be presented. This bridge was used to link a 10 nF capacitance standard to the quantized Hall resistance at 1233 Hz. With pulse-driven Josephson arrays the setup for a quadrature bridge can be reduced dramatically. For the combination of the AC quantum Hall resistance and a 10 nF capacitance standard, most of the uncertainties caused by contact resistances in a two-terminal-pair definition were circumvented by a triple-series connection of the AC quantum Hall resistance. The capacitance value obtained by the new Josephson impedance bridge was compared to the results from a transformer-based ratio bridge and agrees within 1.3 parts in 10(8). Sources of systematic uncertainties were investigated and the combined relative uncertainty of the bridge was determined to be less than 1x10(-8) (k = 1) and 13.9 nFF(-1) (k = 1) for the link of the 10 nF capacitance standard.
机译:本文将介绍基于脉冲驱动的约瑟夫森阵列的双端对阻抗桥的实现。该电桥用于将10 nF电容标准与1233 Hz的量化霍尔电阻连接起来。使用脉冲驱动的约瑟夫森阵列,可以大大减少正交桥的设置。对于交流量子霍尔电阻和 10 nF 电容标准的组合,交流量子霍尔电阻的三串联连接规避了双端子对定义中接触电阻引起的大多数不确定性。将新的约瑟夫森阻抗电桥获得的电容值与基于变压器的比率电桥的结果进行比较,在10(8)中一致在1.3份以内。研究了系统不确定度的来源,并确定电桥的组合相对不确定度小于 1x10(-8) (k = 1) 和 13.9 nFF(-1) (k = 1) 对于 10 nF 电容标准的链路。

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