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A noise thermometry investigation of the melting point of gallium at the NIM

机译:NIM中镓熔点的噪声测温研究

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This paper describes a study of the melting point of gallium with the new NIM Johnson noise thermometer (JNT). The new thermometer adopts the structure of switching correlator and commutator with the reference resistor maintained at the triple point of water. The electronic system of the new thermometer is basically the same as the current JNT, but the preamplifiers have been improved slightly. This study demonstrates that examining the characteristics of the noise signals in the frequency domain is of critical importance in constructing an improved new thermometer, where a power spectral analysis is found to be critical in establishing appropriate grounding for the new thermometer. The new JNT is tested on measurements of the thermodynamic temperature of the melting point of gallium, which give the thermodynamic temperature of 302.9160 K, with an overall integration time of 190 h and a combined standard uncertainty of 9.4 mK. The uncertainty analysis indicates that a standard combined uncertainty of 3 mK could be achieved with the new thermometer over an integration period of 1750 h.
机译:本文介绍了使用新型NIM Johnson噪声温度计(JNT)对镓的熔点进行的研究。新的温度计采用开关相关器和换向器的结构,参考电阻保持在水的三点。新温度计的电子系统与当前的JNT基本相同,但前置放大器已稍作改进。这项研究表明,在构建改进的新温度计时,检查频域中噪声信号的特性至关重要,在该温度计中,功率谱分析对于为新温度计建立适当的接地至关重要。新型JNT在镓熔点的热力学温度的测量中进行了测试,该热力学温度为302.9160 K,总积分时间为190 h,综合标准不确定度为9.4 mK。不确定度分析表明,新温度计在1750 h的积分时间内可以达到3 mK的标准组合不确定度。

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