PACS numbers

06.20.−f Metrology 06.30.−k Measurements common to several branches of physics and astronomy 07.20.−n Thermal instruments and apparatus
  1. D.I. Provorchenko, D.O. Tregubov et alLaser cooling of thulium atoms to ground vibrational state in an optical latticePhys. Usp. 67 1119–1128 (2024)
    06.20.−f, 37.10.De, 37.10.Jk (all)
  2. A.P. Alodjants, D.V. Tsarev et alQuantum optical metrologyPhys. Usp. 67 668–693 (2024)
    03.67.−a, 06.20.−f, 42.50.−p, 42.50.Dv (all)
  3. V.P. Khodunkov “Physical and technical aspects of radiometric thermometry from the standpoint of a new definition of the temperature unitPhys. Usp. 67 706–716 (2024)
    06.20.−f, 06.30.−k, 07.20.−n (all)
  4. A.A. Belyaev, V.G. Voronzov et alN G Basov's legacy: from the first masers to optical frequency standardsPhys. Usp. 66 1026–1036 (2023)
    06.20.−f, 84.40.lk, 95.55.Sh (all)
  5. V.N. Rudenko, S.I. Oreshkin, K.V. Rudenko “Measuring global gravity-inertial effects with ring laser interferometersPhys. Usp. 65 920–951 (2022)
    03.30.+p, 04.20.−q, 06.20.−f, 91.30.−f, 03.75.−b (all)
  6. N.I. Chkhalo, I.V. Malyshev et alDiffraction limited X-ray optics: technology, metrology, applicationsPhys. Usp. 63 67–82 (2020)
    06.30.−k
  7. A.P. Serebrov “Disagreement between measurements of the neutron lifetime by the ultracold neutron storage method and the beam techniquePhys. Usp. 62 596–601 (2019)
    06.20.−f, 12.60.−i, 14.20.Dh (all)
  8. G.N. Makarov “Control of the parameters and composition of molecular and cluster beams by means of IR lasersPhys. Usp. 61 617–644 (2018)
    06.30.−k, 07.77.Gx, 33.80.−b, 36.40.−c, 41.75.Jv, 42.62.Fi, 82.50.Hp (all)
  9. E.B. Aleksandrov, A.K. Vershovskii “Modern radio-optical methods in quantum magnetometryPhys. Usp. 52 573–601 (2009)
    06.20.−f, 07.55.Ge, 76.70.−r (all)
  10. S.G. Karshenboim “On the redefinition of the kilogram and ampere in terms of fundamental physical constantsPhys. Usp. 49 947–954 (2006)
    06.20.−f, 06.20.F−, 06.30-k (all)
  11. A.P. Serebrov “Neutron lifetime measurements using gravitationally trapped ultracold neutronsPhys. Usp. 48 867–885 (2005)
    06.20.−f, 14.20.Dh, 28.20.−v (all)
  12. I.I. Sobel’man, V.N. Sorokin “On experiments in search of the T-odd electric dipole moment of atomic 129XePhys. Usp. 48 939–952 (2005)
    06.20.−f, 11.30.Er, 32.10.Dk, 32.60.+i, 41.20.Cv (all)
  13. S.G. Karshenboim “Fundamental physical constants: their role in physics and metrology and recommended valuesPhys. Usp. 48 255–280 (2005)
    06.02.-f, 06.20.Fn, 06.20.Jr, 06.30.−k (all)
  14. V.B. Braginskii “Adolescent years of experimental physicsPhys. Usp. 46 81–87 (2003)
    03.65.Ta, 04.30.−w, 04.80.Nn, 06.20.−f, 06.30.−k, 95.55.Ym (all)
  15. E.B. Aleksandrov “Contemporary state of the techniques for measurements of the moduli of weak magnetic fields, from zero to ten oerstedPhys. Usp. 44 1199–1199 (2001)
    06.20.−f, 07.55.Ge (all)
  16. E.B. Aleksandrov, I.V. Sokolov et alScientific session of the Division of General Physics and Astronomy of the Russian Academy of Sciences (25 April 2001)Phys. Usp. 44 1199–1199 (2001)
    06.20.−f, 07.55.Ge, 03.67.−a, 32.70.Fw, 32.70.Jz, 42.25.Hz, 42.25.Gy, 42.50.Gy (all)
  17. V.B. Braginskii, V.I. Panov “The Equivalence of Inertial and Gravitational MassesSov. Phys. Usp. 14 811–811 (1972)
    06.30.Dr, 07.10.−h, 07.20.−n, 42.72.−g (all)
  18. M.I. Kornfel’d “Experimental error and reliability of simplest experimentsSov. Phys. Usp. 8 299–304 (1965)
    06.20.Dk, 06.30.−k (all)
  19. I.B. Litinetskii “The achievement of M. V. Lomonosov in the field of automation of measurementsSov. Phys. Usp. 4 850–856 (1962)
    01.60.+q, 06.30.−k (all)
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