@article{PMFA_2019_64_3_a0,
author = {Klenovsk\'y, Pavel and Pra\v{z}\'ak, Dominik},
title = {Nov\'e definice z\'akladn{\'\i}ch jednotek soustavy {SI}},
journal = {Pokroky matematiky, fyziky a astronomie},
pages = {129--138},
year = {2019},
volume = {64},
number = {3},
language = {cs},
url = {http://geodesic.mathdoc.fr/item/PMFA_2019_64_3_a0/}
}
Klenovský, Pavel; Pražák, Dominik. Nové definice základních jednotek soustavy SI. Pokroky matematiky, fyziky a astronomie, Tome 64 (2019) no. 3, pp. 129-138. http://geodesic.mathdoc.fr/item/PMFA_2019_64_3_a0/
[1] Barrow, J. D.: Natural units before Planck. Quart J. R. Astronom. Soc. 24, 24–26.
[2] Becker, P., De Bièvre, P., Fujii, K., Glaeser, M., Inglis, B., Luebbig, H., Mana, G.: Considerations on future redefinitions of the kilogram, the mole and other units. Metrologia 44 (2007), 1–14. | DOI
[3] Bordé, C. J.: Base units of the SI, fundamental constants and modern physics. Philos. Trans. A 363 (2005), 2177–2201. | DOI | MR
[4] Cook, A. H.: Quantum metrology – standards of measurement based on atomic and quantum phenomena. Rep. Progr. Phys. 35 (1972), 463–528. | DOI
[5] Deslattes, R. D.: Determination of the Avogadro constant. Phys. Rev. Lett. 33 (1974), 463–466. | DOI
[6] Fletcher, N., Davis, R. S., Stock, M., Milton, M. J. T.: Modernizing the SI – implications of recent progress with the fundamental constants. Dostupné z: arXiv:1510.08324. (2015), 12 pp.
[7] Güttler, B.: Amount of substance and the mole in the SI. Metrologia 56 (2019), 044002, 14 pp. | DOI
[8] bipm.org: http://www.bipm.org/en/CGPM/db/21/7/</b>
[9] bipm.org: http://www.bipm.org/en/CGPM/db/23/12/</b>
[10] bipm.org: http://www.bipm.org/en/CGPM/db/24/1/</b>
[11] bipm.org: http://www.bipm.org/en/CGPM/db/25/1/</b>
[12] Klenovský, P.: Nové definice základních jednotek soustavy SI. Metrologie 28 (2019), 18–21.
[13] Mendelson, K. S.: On an early proposal for a unified system of units. Amer. J. Phys. 83, 183–185. | DOI
[14] Mills, I. M., Mohr, P. J., Quinn, T. J., Taylor, B. N., Williams, E. R.: Redefinition of the kilogram, ampere, kelvin and mole: a proposed approach to implementing CIPM recommendation 1 (CI-2005). Metrologia 43 (2006), 227–246. | DOI
[15] Mockler, R. C.: Atomic beam frequency standards. Adv. Electronics and Electron Phys. 15 (1961), 1–71. | DOI
[16] Mohr, P. J.: Defining units in the quantum based SI. Metrologia 45 (2008), 129–133. | DOI
[17] Mohr, P. J., Newell, D. B., Taylor, B. N., Tiesinga, E.: Data and analysis for the CODATA 2017 special fundamental constants adjustment. Metrologia 55 (2018), 125–146.
[18] Riehle, F., Gill, P., Arias, F., Robertsson, L.: The CIPM list of recommended frequenecy standard values: guidelines and procedures. Metrologia 56 (2019), 044002, 14 pp.
[19] Stock, M., Davis, R., De Mirandés, E., Milton, M. J. T.: The revision of the SI – the result of three decades of progress in metrology. Metrologia 56 (2019), 022001, 14 pp.
[20] Taylor, B. N.: The possible role of the fundamental constants in replacing the kilogram. IEEE Trans. Instrumentation Measurement 40 (1991), 86–91. | DOI
[21] Tomilin, K. A.: Natural systems of units. In: Proc. of the XXII Workshop on high energy physics and field theory, 287–296. Dostupné z: http://www.ihst.ru/personal/tomilin/papers/tomil.pdf