PACS numbers

07.57.−c Infrared, submillimeter wave, microwave and radiowave instruments and equipment 74.81.Fa Josephson junction arrays and wire networks 85.25.Cp Josephson devices
  1. S.A. Lemzyakov, M. Tarasov, V.S. Edelman “External factors acting on low-temperature conductivity of superconductor—insulator—normal metal—insulator—superconductor tunnel structuresPhys. Usp. 68 711–716 (2025)
    07.57.−c, 74.45.+c, 85.25.Pb (all)
  2. F.V. Khan, L.V. Filippenko et alSuperconducting terahertz generatorsPhys. Usp. 68 584–596 (2025)
    07.57.−c, 74.81.Fa, 85.25.Cp (all)
  3. A.K. Kaveev, G.I. Kropotov “Terahertz polarization converters: physical principles, design, and applicationsPhys. Usp. 68 294–314 (2025)
    07.57.−c, 42.25.Ja, 42.81.Gs (all)
  4. L.V. Filippenko, A.M. Chekushkin et alSuperconducting terahertz receiversPhys. Usp. 67 1139–1152 (2024)
    07.57.−c, 85.25.−j, 95.55.−n (all)
  5. P.A. Forsh, S.Yu. Stremoukhov et alQuantum memristors: a new approach to neuromorphic computingPhys. Usp. 67 855–865 (2024)
    03.67.−a, 42.50.Dv, 85.25.Cp (all)
  6. O.V. Ovchinnikov, A.N. Latyshev, M.S. Smirnov “On the centenary of the discovery of submillimeter electromagnetic wavesPhys. Usp. 67 950–958 (2024)
    01.65.+g, 07.57.−c, 07.57.Pt (all)
  7. D.S. Ponomarev, A.E. Yachmenev et alOptical-to-terahertz switches: state of the art and new opportunities for multispectral imagingPhys. Usp. 67 3–21 (2024)
    07.57.−c, 42.30.Wb, 84.40.−x (all)
  8. V.A. Vozhakov, M.V. Bastrakova et alState control in superconducting quantum processorsPhys. Usp. 65 421–439 (2022)
    03.67.Lx, 03.75.Lm, 42.50.Dv, 85.25.Cp (all)
  9. Yu.M. Shukrinov “Anomalous Josephson effectPhys. Usp. 65 317–354 (2022)
    74.50.+r, 85.25.Cp, 85.75.−d (all)
  10. A.V. Samokhvalov, A.S. Mel’nikov, A.I. Buzdin “Long-range ballistic transport mechanisms in superconducting spintronicsPhys. Usp. 59 571–576 (2016)
    74.45.+c, 74.78.Na, 85.25.Cp (all)
  11. M.Yu. Glyavin, G.G. Denisov et alHigh power terahertz sources for spectroscopy and material diagnosticsPhys. Usp. 59 595–604 (2016)
    07.57.−c, 41.60.−m, 84.40.Ik (all)
  12. G.R. Ivanitskii, A.A. Deev, E.P. Khizhnyak “Long-term dynamic structural memory in water: can it exist?Phys. Usp. 57 37–65 (2014)
    07.57.−c, 61.20.−p, 65.20.−w, 83.10.Mj, 89.70.Cf (all)
  13. Advances in astronomy (Scientific session of the Physical Sciences Division of the Russian Academy of Sciences, 27 February 2013)Phys. Usp. 56 704–737 (2013)
    01.10.Fv, 04.50.−h, 04.70.−s, 07.57.−c, 07.87.+v, 12.10.Kt, 84.40.−x, 89.20.−a, 95.36.+x, 96.12.−a, 96.30.Gc, 97.10.Bt, 97.60.Lf, 97.80.Jp, 98.62.Js, 98.70.Qy, 98.80.−k (all)
  14. A.V. Ipatov “A new generation interferometer for fundamental and applied researchPhys. Usp. 56 729–737 (2013)
    01.10.Fv, 07.57.−c, 84.40.−x, 89.20.−a (all)
  15. V.L. Bratman, A.G. Litvak, E.V. Suvorov “Mastering the terahertz domain: sources and applicationsPhys. Usp. 54 837–844 (2011)
    07.57.−c, 42.62.−b, 84.40.Ik (all)
  16. Celebrating 50 years of the laser (Scientific session of the General Meeting of the Physical Sciences Division of the Russian Academy of Sciences, 13 December 2010)Phys. Usp. 54 837–870 (2011)
    01.10.Fv, 03.75.−b, 07.57.−c, 32.30.Jc, 37.10.−x, 37.10.De, 37.10.Gh, 42.62.−b, 42.65.−k, 42.70.−a, 42.82.−m, 67.85.−d, 78.67.−n, 85.40.−e, 84.40.Ik (all)
  17. R.D. Dagkesamanskii “The Pushchino Radio Astronomy Observatory of the P N Lebedev Physical Institute Astro Space Center: yesterday, today, and tomorrowPhys. Usp. 52 1159–1167 (2009)
    01.30.Bb, 01.65.+g, 07.57.−c, 95.55.Jz (all)
  18. V.F. Kravchenko, A.A. Kuraev, A.K. Sinitsyn “Nonsynchronous interactionsPhys. Usp. 50 489–511 (2007)
    07.57.−c, 41.20.Jb, 84.40.−x (all)
  19. G.R. Ivanitskii “Modern matrix thermovision in biomedicinePhys. Usp. 49 1263–1288 (2006)
    07.57.−c, 87.57.−s, 87.63.Hg (all)
  20. D.R. Khokhlov, A.V. Mitin et alScientific session of the Physical Sciences Division of the Russian Academy of Sciences (12 April 2006)Phys. Usp. 49 955–959 (2006)
    01.10.Fv, 07.57.−c, 78.20.−e, 85.30.−z (all)
  21. S.E. Korshunov “Phase transitions in two-dimensional systems with continuous degeneracyPhys. Usp. 49 225–262 (2006)
    05.70.Fh, 64.60.Cn, 74.81.Fa, 75.10.Hk, 75.50.Ee (all)
  22. G.R. Ivanitskii, A.A. Deev, E.P. Khizhnyak “Water surface structures observed using infrared imagingPhys. Usp. 48 1151–1159 (2005)
    07.57.−c, 42.27.Te, 68.03.−g (all)
  23. L.S. Kuz’min “Supersensitive cold-electron bolometers in studies of dark matter and dark energyPhys. Usp. 48 519–525 (2005)
    07.57.−c, 07.57.Kp, 95.55.Rg (all)
  24. Yu.A. Pashkin, O.V. Astaf’ev et alJosephson solid-state qubitsPhys. Usp. 47 943–944 (2004)
    03.67.Lx, 85.25.Cp (all)
  25. L.B. Ioffe, M.V. Feigel’man “Realization of topologically protected quantum bits in a Josephson junction arrayPhys. Usp. 46 759–764 (2003)
    03.67.Lx, 03.67.Pp, 74.81.Fa (all)
  26. A.E. Reznikov, V.V. Kopeikin et alDevelopment of apparatus and data processing methods for electromagnetic subsurface probing and experiments with their practical implementationPhys. Usp. 43 521–524 (2000)
    07.05.Kf, 07.57.−c, 07.90.+c, 84.40.−x (all)
  27. M.V. Feigel’man “A quantum bit based on a Josephson contact between conventional and high-temperature superconductors (theory)Phys. Usp. 42 823–825 (1999)
    03.67.Lx, 73.23.Hk, 73.40.−c, 85.25.Cp (all)
  28. V.V. Ryazanov “Josephson superconductor-ferromagnet-superconductor π-contact as an element of a quantum bit (experiment)Phys. Usp. 42 825–827 (1999)
    03.67.Lx, 73.23.Hk, 73.40.−c, 85.25.Cp (all)
  29. A.K. Kaveev, G.I. Kropotov “Physical principles of filtration and the design of THz radiation filtersPhys. Usp., accepted
    07.57.−c, 42.25.Ja, 42.81.Gs (all)
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