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毫开尔文温度范围内的初级电流感应噪声测温法。

Primary current-sensing noise thermometry in the millikelvin regime.

作者信息

Shibahara A, Hahtela O, Engert J, van der Vliet H, Levitin L V, Casey A, Lusher C P, Saunders J, Drung D, Schurig Th

机构信息

Department of Physics, Royal Holloway University of London, Egham TW20 0EX, UK

VTT Technical Research Centre of Finland, PO Box 1000, 02044 VTT Espoo, Finland.

出版信息

Philos Trans A Math Phys Eng Sci. 2016 Mar 28;374(2064):20150054. doi: 10.1098/rsta.2015.0054.

Abstract

The use of low-temperature platforms with base temperatures below 1 K is rapidly expanding, for fundamental science, sensitive instrumentation and new technologies of potentially significant commercial impact. Precise measurement of the thermodynamic temperature of these low-temperature platforms is crucial for their operation. In this paper, we describe a practical and user-friendly primary current-sensing noise thermometer (CSNT) for reliable and traceable thermometry and the dissemination of the new kelvin in this temperature regime. Design considerations of the thermometer are discussed, including the optimization of a thermometer for the temperature range to be measured, noise sources and thermalization. We show the procedure taken to make the thermometer primary and contributions to the uncertainty budget. With standard laboratory instrumentation, a relative uncertainty of 1.53% is obtainable. Initial comparison measurements between a primary CSNT and a superconducting reference device traceable to the PLTS-2000 (Provisional Low Temperature Scale of 2000) are presented between 66 and 208 mK, showing good agreement within the k=1 calculated uncertainty.

摘要

基础温度低于1 K的低温平台的应用正在迅速扩展,用于基础科学、敏感仪器以及可能具有重大商业影响的新技术。精确测量这些低温平台的热力学温度对其运行至关重要。在本文中,我们描述了一种实用且用户友好的初级电流感应噪声温度计(CSNT),用于在该温度范围内进行可靠且可溯源的温度测量以及新开尔文温度的传递。讨论了温度计的设计考量,包括针对待测温度范围对温度计的优化、噪声源和热平衡。我们展示了使温度计成为初级温度计所采取的步骤以及对不确定度预算的贡献。使用标准实验室仪器,可获得1.53%的相对不确定度。给出了在66至208 mK之间初级CSNT与可溯源至PLTS - 2000(2000年临时低温温标)的超导参考装置之间的初始比较测量结果,在k = 1计算不确定度范围内显示出良好的一致性。

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