Progress towards a determination of the indium freezing point by Johnson noise thermometry

被引:0
|
作者
White, DR [1 ]
Mason, RS [1 ]
Saunders, P [1 ]
机构
[1] Measurement Stand Lab New Zealand, Lower Hutt, New Zealand
来源
TEMPMEKO 2001: 8TH INTERNATIONAL SYMPOSIUM ON TEMPERATURE AND THERMAL MEASUREMENT IN INDUSTRY AND SCIENCE, VOL 1 & 2, PROCEEDINGS | 2002年
关键词
D O I
暂无
中图分类号
O414.1 [热力学];
学科分类号
摘要
The Johnson noise thermometer at MSL is a switching digital-correlator with the reference resistor maintained at the triple point of water. Critical blocks of the electronics system including the preamplifiers, band-pass filters and analog-to-digital converters are powered by batteries, maintained in a radio-frequency screened cabinet and isolated by fibre-optic interfaces. The final signal processing stages are carried out in real-time in the frequency domain using a personal computer. Frequency domain processing has the advantage of digital selection of the bandwidth, sensitive tests for electromagnetic interference, and compact storage of all measurements. A summary uncertainty analysis shows that an accuracy (1sigma) of 0.001% should be achievable. Progress towards the determination of the indium freezing point is reported.
引用
收藏
页码:129 / 134
页数:6
相关论文
共 50 条
  • [21] Practical realisation of the kelvin by Johnson noise thermometry
    Benz, Samuel P.
    Coakley, Kevin J.
    Flowers-Jacobs, Nathan E.
    Rogalla, Horst
    Tew, Weston L.
    Qu, Jifeng
    White, D. Rod
    Gaiser, Christof
    Pollarolo, Alessio
    Urano, Chiharu
    METROLOGIA, 2024, 61 (02)
  • [22] An ac Josephson source for Johnson noise thermometry'
    Benz, SP
    Martinis, JM
    Dresselhaus, PD
    Nam, SW
    2002 CONFERENCE ON PRECISION ELECTROMAGNETIC MEASUREMENTS, CONFERENCE DIGEST, 2002, : 436 - 437
  • [23] Improved spectral aberration in Johnson Noise Thermometry
    Pollarolo, A.
    Rogalla, H.
    Fox, A.
    Coakley, K. J.
    Tew, W. L.
    Benz, S. P.
    2016 CONFERENCE ON PRECISION ELECTROMAGNETIC MEASUREMENTS (CPEM 2016), 2016,
  • [24] CORRELATION METHOD ERRORS IN JOHNSON NOISE THERMOMETRY
    Callegaro, L.
    Pisani, M.
    Ortolano, M.
    D'Elia, V.
    Manta, F.
    2010 CONFERENCE ON PRECISION ELECTROMAGNETIC MEASUREMENTS CPEM, 2010, : 504 - +
  • [25] Improvements in the NIST Johnson noise thermometry system
    Benz, S. P.
    Rogalla, H.
    White, D. R.
    Qu, Jifeng
    Dresselhaus, P. D.
    Tew, W. L.
    Nam, S. W.
    2008 CONFERENCE ON PRECISION ELECTROMAGNETIC MEASUREMENTS DIGEST, 2008, : 36 - 37
  • [26] Improvements in the NIST Johnson Noise Thermometry System
    Benz, Samuel P.
    Qu, Jifeng
    Rogalla, Horst
    White, D. Rod
    Dresselhaus, Paul D.
    Tew, Weston L.
    Nam, Sae Woo
    IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT, 2009, 58 (04) : 884 - 890
  • [27] Constraints on a synthetic-noise source for Johnson noise thermometry
    White, D. R.
    Benz, S. P.
    METROLOGIA, 2008, 45 (01) : 93 - 101
  • [28] Integrated quantum voltage noise source for Johnson noise thermometry
    Maezawa, Masaaki
    Yamada, Takahiro
    Urano, Chiharu
    11TH EUROPEAN CONFERENCE ON APPLIED SUPERCONDUCTIVITY (EUCAS2013), PTS 1-4, 2014, 507
  • [29] Johnson noise thermometry for space reactor temperature measurement
    Holcomb, DE
    Kisner, RA
    Roberts, MJ
    SPACE TECHNOLOGY AND APPLICATIONS INTERNATIONAL FORUM-STAIF 2004, 2004, 699 : 567 - 573
  • [30] Superposition Johnson Noise Thermometry with a Quantum Voltage Noise Source for Calibration
    Zhou, Kunli
    Han, Qina
    Shi, Yang
    Wang, Miaoer
    Zhao, Jianting
    Qu, Jifeng
    2020 CONFERENCE ON PRECISION ELECTROMAGNETIC MEASUREMENTS (CPEM), 2020,