INRiM时间相关约瑟夫森电压标准的最新进展与展望

Q3 Engineering Acta IMEKO Pub Date : 2023-09-06 DOI:10.21014/actaimeko.v12i3.1436
Paolo Durandetto, Danilo Serazio, Andrea Sosso
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引用次数: 1

摘要

基于交流约瑟夫森效应的量子电压标准在发现这一物理现象后的几年里被用于计量。继2019年国际单位制重新定义之后,量子标准的作用现在变得至关重要:如今,电学单位是根据基本常数e(基本电荷)和h(普朗克常数)定义的。直流测量的不确定度极低,在10v时可低于1nv /V,这刺激了将应用扩展到交流和随时间任意变化的信号的研究。然而,接近直流精度是具有挑战性的。用于产生非稳态电压信号的两种主要技术是可编程和脉冲约瑟夫森结阵列。在这项工作中,我们讨论了意大利国家计量研究所(INRiM)在这两项技术上取得的主要进展,以及利用无he器件冷却技术的最新发展。
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Recent advancements and perspectives of INRiM’s time-dependent Josephson voltage standards
Quantum voltage standards based on ac Josephson effect have been used in metrology since a few years after the discovery of the physical phenomenon. The role of quantum standards is now crucial following the SI redefinition in 2019: electrical units are today defined in terms of the fundamental constants e (elementary charge) and h (Planck’s constant). The extremely low uncertainty in dc measurements, that can be lower than 1 nV/V at 10 V, is stimulating research to extend application to ac and signals arbitrarily changing with time. Approaching the dc accuracy is challenging, however. The two main technologies used for the generation of non-steady voltage signals are programmable and pulsed Josephson junction arrays. In this work we discuss the main advancements obtained at the Italian Istituto Nazionale di Ricerca Metrologica (INRiM) with both technologies, and the most recent developments taking advantage of He-free device cooling techniques.
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来源期刊
Acta IMEKO
Acta IMEKO Engineering-Mechanical Engineering
CiteScore
2.50
自引率
0.00%
发文量
75
期刊介绍: The main goal of this journal is the enhancement of academic activities of IMEKO and a wider dissemination of scientific output from IMEKO TC events. High-quality papers presented at IMEKO conferences, workshops or congresses are seleted by the event organizers and the authors are invited to publish an enhanced version of their paper in this journal. The journal also publishes scientific articles on measurement and instrumentation not related to an IMEKO event.
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