Preview

Izmeritel`naya Tekhnika

Advanced search
Open Access Open Access  Restricted Access Subscription Access

Quantum effects and fundamental constants in the basis of standards of electric units

https://doi.org/10.32446/0368-1025it.2020-2-65-70

Abstract

The paper describes the principles of construction of modern standards in the field of electrical units with reference to quantum effects and fundamental constants in accordance with the new definitions of the SI system of units. The description of the methods used to build a quantum standards, description of the used measurement quantum transducers, modes and operation principle the experimental setup of the reference complex studied in this work. The description of the software developed for this task is given. The method of measurements and the results obtained in the course of experimental studies, which are in good agreement with theoretical studies, are described. Conclusions and tasks for future research are formulated. Field of application – metrology of measuring instruments of electrical units.

About the Authors

S. V. Sherstobitov
Russian metrological institute of technical physisl and radio engineering measurements
Russian Federation

Sergey V. Sherstobitov

Mendeleevo, Moscow region



M. V. Karpova
Russian metrological institute of technical physisl and radio engineering measurements
Russian Federation

Maria V. Karpova

Mendeleevo, Moscow region



M. A. Tertychnaya
Russian metrological institute of technical physisl and radio engineering measurements
Russian Federation

Marina A. Tertychnaya

Mendeleevo, Moscow region



References

1. The BIPM recommended practical system of units of measurement is the International System of Units, available at:www.bipm.org/en/measurement-units/rev-si/(accessed: 20.11.2019).

2. The BIPM defi nition of the ampere and other electric units in the SI, available at:https://www.bipm.org/utils/en/pdf/si-mep/SI-App2-ampere.pdf(accessed: 20.11.2019).

3. Actual values of the The Fundamental Physical Constants available at: CODATA Task Group on Fundamental Physical Constants https://www.codata.org/committees-and-groups/fundamental-physical-constants(accessed: 01.12.2019).

4. Vasil’ev D. R., Karpov O. V., Krutikov V. N., Kutovoi V. D., Tertychnaya M. A., Sherstobitov S. V., Measurement Techniques, 2003, vol. 46, no. 3, pp. 254–261. DOI:10.1023/A:1024061212665

5. Hamilton C. A., Burroughs C. J., Kautz R. L., IEEE Trans. Instrum. Meas, 1995, vol. 44, no. 2, pp. 223–225. DOI:10.1109/19.377816

6. Benz S. P., Hamilton C.A., Appl. Phis. Lett., 1996, vol. 68, no. 22, pp. 3171–3173. DOI:10.1063/1.115814

7. Karpov O. V., Buchstaber V. M., Tertychnaya M. A., Tertychnyi S. I., Sherstobitov S. V., Communications Technology and Electronics, 2009, vol. 54, no. 2, pp. 234–240. DOI:10.1134/S1064226909020181

8. Karpov O. V., Buchstaber V. M., Sherstobitov S. V., Tertychniy S. I., Tertychnaya M. A., Niemeyer J., Journal of Applied Physics, 2008, vol. 104, no. 9, pp.093911–093911-4. DOI:10.1063/1.2960455

9. Urano C., Kaneko N., Oe T., Maezawa M., Itatani T., Gorwadkar S., Saitiu H., Maeda J., Kiryu S., Physica C. 2007, vol. 464–465, pp. 1123–1126. DOI:10.1016/j.physc.2007.01.066

10. Kieler O., Karlsen B., Per Alfred Ohlckers, Bardalen E., Muhammad Nadeem Akram, Behr R., Ireland J., Williams J., Malmbekk H., Palafox L., Wendisch R., IEEE Transactions on Applied Superconductivity, 2019, vol. 29, no. 5, p. 1200205. DOI:10.1109/tim.2018.2877562

11. Sherstobitov S. V., Dobrovolskiy V. I., Karpova M. V, Optically driven quantum Josephson voltage standard. Abstracts of BIPM Workshop The Quantum Revolution in Metrology, Paris, France, September 28–29, 2017. аvailable at: https://www.bipm.org/utils/common/pdf/WS-Quantum-Revolution/S4/S4-15.pdf(accesed: 20.11.2019).

12. Kalitkin N. N. Chislennie metody. St. Petersburg, BXVPetersburg Publ., 2011, 592 p. (in Russian).

13. Karpov O. V., Buchstaber V. M, Sherstobitov S. V., Tertychniy S. I., Niemeyer J., Kieler O., Journal of Applied Physics, 2006, vol. 100, pp. 93–97. DOI:10.1063/1.2358817

14. Kieler O. F., Behr R., Wendisch R., Bauer S., Palafox L., Kohlmann J., IEEE Trans. Appl. Supercond, 2015, vol. 25, no. 3, pp. 1–5. DOI:10.1109/TASC.2014.2366916

15. Oliver F. Kieler, Thomas Scheller, Johannes Kohlmann, Cryocooler Operation of a Pulse-Driven AC Josephson Voltage Standard at PTB, World Journal of Condensed Matter Physics, 2013, vol. 3, pp.189–193. DOI:10.4236/wjcmp.2013.34031


Review

For citations:


Sherstobitov S.V., Karpova M.V., Tertychnaya M.A. Quantum effects and fundamental constants in the basis of standards of electric units. Izmeritel`naya Tekhnika. 2020;(2):65-71. (In Russ.) https://doi.org/10.32446/0368-1025it.2020-2-65-70

Views: 157


ISSN 0368-1025 (Print)
ISSN 2949-5237 (Online)