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Fast Johnson noise thermometry using a temperature dependent sensor

机译:使用温度相关传感器的快速Johnson噪声温度

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Johnson noise thermometry is a well established technique that allows the determination of the temperature starting from the measurement of the thermal noise produced by a known resistance at thermal equilibrium. Notwithstanding that, under proper conditions, the Johnson noise thermometer is a primary thermometer, the very long measurement time that is required to reach accuracies in the order of a fraction of a Kelvin is possibly the main reason why it is used only in a limited set of application fields. Here we propose to employ a strongly temperature dependent device as a sensor, namely a semiconductor diode at equilibrium, in order to significantly reduce the measurement time. It will be shown how, by means of the simultaneous measurements of the noise produced by the sensor device (diode) and by a high accuracy and high stability reference resistor, the sensor can be calibrated with high accuracy. Preliminary results are presented demonstrating the effectiveness of the approach we propose and the possibility of reaching accuracies in the order of a small fraction of 1 K in the temperature range from 300 to 400 K.
机译:Johnson噪声温度是一种良好的技术,允许从通过热平衡的已知电阻产生的热噪声测量开始的温度。尽管如此,在适当的条件下,Johnson噪声温度计是一个主要的温度计,所需的测量时间很长,所以在kelvin的一小部分中达到准确性的准确性可能是它仅在有限的集合中使用的主要原因应用领域。在这里,我们建议使用强温依赖的装置作为传感器,即均衡处的半导体二极管,以便显着降低测量时间。将通过传感器装置(二极管)产生的噪声和通过高精度和高稳定性参考电阻的同时测量来展示如何,传感器可以高精度地校准传感器。提出了初步结果,证明了我们提出的方法的有效性以及在温度范围为300至400k的少数一k的一小部分中达到精度的可能性。

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