PACS numbers

78.67.Pt Multilayers; superlattices; photonic structures; metamaterials
  1. V.V. Dudelev, E.D. Cherotchenko et alQuantum cascade lasers for the 8-μm spectral range: technology, design, and analysisPhys. Usp. 67 92–98 (2024)
    42.55.Px, 42.60.−v, 78.67.Pt (all)
  2. V.V. Klimov “Optical nanoresonatorsPhys. Usp. 66 263–287 (2023)
    03.50.De, 32.50.+d, 32.70.Jz, 42.25.−p, 42.50.Pq, 42.79.−e, 78.67.−n, 78.67.Pt (all)
  3. V.V. Klimov “Control of the emission of elementary quantum systems using metamaterials and nanometaparticlesPhys. Usp. 64 990–1020 (2021)
    03.50.De, 32.50.+d, 32.70.Jz, 42.25.−p, 42.50.Pq, 42.79.−e, 78.67.−n, 78.67.Pt (all)
  4. M.V. Davidovich “Hyperbolic metamaterials: production, properties, applications, and prospectsPhys. Usp. 62 1173–1207 (2019)
    42.70.Qs, 78.67.Pt, 81.05.Xj (all)
  5. V.V. Lider “Multilayer X-ray interference structuresPhys. Usp. 62 1063–1095 (2019)
    07.85.−m, 41.50.+h, 42.79.Dj, 42.88.+h, 61.05.cp, 78.20.Bh, 78.67.Pt, 95.55.Ka (all)
  6. V.V. Klimov “On the existence of 'super-resonant' states in sub-wavelength dielectric resonators and their relation to bound states in the continuumPhys. Usp. 62 1058–1059 (2019)
    42.25.−p, 42.70.Qs, 78.67.−n, 78.67.Pt (all)
  7. M.V. Rybin, M.F. Limonov “Resonance effects in photonic crystals and metamaterials (100th anniversary of the Ioffe Institute)Phys. Usp. 62 823–838 (2019)
    42.25.−p, 42.70.Qs, 78.67.Pt (all)
  8. M.A. Remnev, V.V. Klimov “Metasurfaces: a new look at Maxwell's equations and new ways to control lightPhys. Usp. 61 157–190 (2018)
    42.25.Fx, 42.65.−k, 42.70.−a, 42.79.−e, 68.65.−k, 78.67.−n, 78.67.Pt (all)
  9. Plasmonics (Scientific session of the Physical Sciences Division of the Russian Academy of Sciences, 21 February 2012)Phys. Usp. 55 1035–1058 (2012)
    01.10.Fv, 33.50.Dq, 42.50.Nn, 42.55.Ah, 42.70.Nq, 71.45.−d, 73.20.Mf, 73.22.−f, 78.20.Ek, 78.67.Bf, 78.67.Pt, 81.05.Xj (all)
  10. A.P. Vinogradov, E.S. Andrianov et alQuantum plasmonics of metamaterials: loss compensation using spasersPhys. Usp. 55 1046–1053 (2012)
    42.50.Nn, 73.20.Mf, 78.67.Pt, 81.05.Xj (all)
  11. 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)
  12. 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)
  13. A.V. Kildishev, V.M. Shalaev “Transformation optics and metamaterialsPhys. Usp. 54 53–63 (2011)
    42.70.−a, 42.79.−e, 78.67.Pt (all)
  14. S.G. Rautian “Reflection and refraction at the boundary of a medium with negative group velocityPhys. Usp. 51 981–988 (2008)
    42.25.Gy, 78.20.Ci, 78.67.Pt (all)
  15. V.S. Edel’man “The development of scanning tunneling microscopySov. Phys. Usp. 34 (3) 272–273 (1991)
    07.79.Cz, 68.37.Ef, 72.40.+w, 78.55.Cr, 74.72.Bk, 78.67.Pt (all)
  16. A.P. Silin “Semiconductor superlatticesSov. Phys. Usp. 28 972–993 (1985)
    73.21.Cd, 78.67.Pt, 62.65.+k, 68.65.Cd, 72.20.My, 78.60.−b (all)
  17. S.V. Gaponov “Ultrathin solid-state films and multilayered structures: methods of fabrication, study, and applicationsSov. Phys. Usp. 28 522–524 (1985)
    71.20.Nr, 73.21.Cd, 78.67.Pt (all)
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