PACS numbers

42.15.−i Geometrical optics
  1. V.P. Savinykh, I.Yu. Vasyutinsky, D.V. Dement’ev “Vertical refraction of light in the atmospheric surface layer: traditional problems of determining refraction and new technical achievementsPhys. Usp. 65 864–879 (2022)
    42.15.−i, 42.25.Bs, 42.68.Bz (all)
  2. V.V. Shevchenko “Corrections to the paper by V V Shevchenko “Localization of a stationary electromagnetic field by a planar boundary of a metamaterial” [Physics—Uspekhi 54 (11) 1131–1142 (2011)]Phys. Usp. 55 324–324 (2012)
    42.15.−i, 42.30.−d, 78.67.Pt (all)
  3. V.V. Shevchenko “Localization of a stationary electromagnetic field by a planar boundary of a metamaterialPhys. Usp. 54 1131–1142 (2011)
    42.15.−i, 42.30.−d, 78.67.Pt (all)
  4. E.H. Lock “The properties of isofrequency dependences and the laws of geometrical opticsPhys. Usp. 51 375–393 (2008)
    42.15.−i, 42.25.Gy, 78.20.Ci (all)
  5. A.V. Timofeev “Geometrical optics and the diffraction phenomenonPhys. Usp. 48 609–613 (2005)
    42.15.−i, 42.25.Fx (all)
  6. V.G. Veselago “Electrodynamics of materials with negative index of refractionPhys. Usp. 46 764–768 (2003)
    41.20.Jb, 42.15.−i, 42.70.−a (all)
  7. V.G. Veselago “Formulating Fermat’s principle for light traveling in negative refraction materialsPhys. Usp. 45 1097–1099 (2002)
    42.15.−i, 42.79.Bh, 78.20.Ci (all)
  8. A.A. Kolokolov “Fresnel formulas and the principle of causalityPhys. Usp. 42 931 (1999)
    03.40.Kf, 42.15.−i, 42.20.Jb, 42.25.−p (all)
  9. Yu.A. Kravtsov, O.N. Naida, A.A. Fuki “Waves in weakly anisotropic 3D inhomogeneous media: quasi-isotropic approximation of geometrical opticsPhys. Usp. 39 129–154 (1996)
    42.15.−i, 42.25.Bs, 42.68.Ay, 92.60.Ta (all)
  10. Yu.N. Barabanenkov, Yu.A. Kravtsov et alStatus of the Theory of Wave Propagation in Randomly-inhomogeneous MediaSov. Phys. Usp. 13 296–297 (1970)
    42.25.Dd, 42.25.Fx, 42.15.−i, 02.30.Mv (all)
  11. Yu.A. Kravtsov “Geometrical-optics Method and Its GeneralizationsSov. Phys. Usp. 13 297–298 (1970)
    42.15.−i, 42.25.Fx, 02.30.Mv (all)
  12. S.I. Vavilov “Galileo in the history of opticsSov. Phys. Usp. 7 596–616 (1965)
    07.60.−j, 42.15.−i, 95.55.Br (all)
  13. B.Z. Katsenelenbaum “Quasioptical methods of generation and transmission of millimeter wavesSov. Phys. Usp. 7 385–400 (1964)
    84.40.−x, 42.15.−i, 42.79.Bh (all)
  14. B.D. Tartakovskii “Second All-Union symposium on wave diffractionSov. Phys. Usp. 5 1006–1023 (1963)
    42.25.Fx, 42.15.−i (all)
  15. G.D. Malyuzhinets “Developments in our concepts of diffraction phenomena (on the 130TH anniversary of the death of Thomas Young)Sov. Phys. Usp. 2 749–758 (1959)
    42.25.Fx, 42.15.−i (all)
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