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Analyzing the Effects of Capacitances-to-Shield in Sample Probes on AC Quantized Hall Resistance Measurements

机译:分析样品探针中的电容-屏蔽对交流量化霍尔电阻测量的影响

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摘要

We analyze the effects of the large capacitances-to-shields existing in all sample probes on measurements of the ac quantized Hall resistance RH. The object of this analysis is to investigate how these capacitances affect the observed frequency dependence of RH. Our goal is to see if there is some way to eliminate or minimize this significant frequency dependence, and thereby realize an intrinsic ac quantized Hall resistance standard. Equivalent electrical circuits are used in this analysis, with circuit components consisting of: capacitances and leakage resistances to the sample probe shields; inductances and resistances of the sample probe leads; quantized Hall resistances, longitudinal resistances, and voltage generators within the quantum Hall effect device; and multiple connections to the device. We derive exact algebraic equations for the measured RH values expressed in terms of the circuit components. Only two circuits (with single-series “offset” and quadruple-series connections) appear to meet our desired goals of measuring both RH and the longitudinal resistance Rx in the same cool-down for both ac and dc currents with a one-standard-deviation uncertainty of 10−8 RH or less. These two circuits will be further considered in a future paper in which the effects of wire-to-wire capacitances are also included in the analysis.
机译:我们分析了所有采样探头中存在的大电容至屏蔽对交流量化霍尔电阻RH的测量的影响。该分析的目的是研究这些电容如何影响所观察到的RH的频率依赖性。我们的目标是查看是否有某种方法可以消除或最小化这种重要的频率依赖性,从而实现固有的交流量化霍尔电阻标准。在此分析中使用了等效电路,电路组件包括:样品探针屏蔽层的电容和泄漏电阻;样品探针引线的电感和电阻;量子霍尔效应器件中的量化霍尔电阻,纵向电阻和电压发生器;以及与设备的多个连接。我们针对以电路组件表示的相对湿度测量值导出精确的代数方程。只有两个电路(具有单串联“偏置”和四联串联连接)似乎可以满足我们的期望目标,即在同一冷却条件下,用一个标准的交流和直流电流测量RH和纵向电阻Rx相对不确定度小于10 −8 RH。在以后的论文中将进一步考虑这两个电路,其中分析中还包括线对线电容的影响。

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