PACS numbers

07.87.+v Spaceborne and space research instruments, apparatus, and components 92.60.Ry Climatology, climate change and variability 96.30.−t Solar system objects
  1. O.I. Korablev, A.Yu. Trokhimovskiy et alPlanetary atmosphere research: modern methods and their applications to climate change studies in RussiaPhys. Usp. 69 (8) (2026)
    07.87.+v, 96.30.−t, 92.60.Ry (all)
  2. D.I. Novikov, A.G. Doroshkevich et alNew horizons for research on cosmic microwave backgroundPhys. Usp. 68 987–1000 (2025)
    07.87.+v, 98.70.Vc, 98.80.Es (all)
  3. V.D. Kuznetsov “Space-based and extra-atmospheric studies of the SunPhys. Usp. 68 807–822 (2025)
    07.87.+v, 96.60.−j (all)
  4. M.S. Kirsanova, P.V. Baklanov et alOrigin and transport of water in the UniversePhys. Usp. 68 278–293 (2025)
    07.87.+v, 95.55.−n, 96.55.+z (all)
  5. L.M. Zelenyi, E.Yu. Kilpio “Physical Sciences Division of the Russian Academy of Sciences in the 21st century: space research and astrophysicsPhys. Usp. 67 1200–1236 (2024)
    07.87.+v, 95.55.−n, 96.20.−n, 96.30.−t (all)
  6. S.F. Likhachev, T.I. Larchenkova “From the Spektr-R project to the Spektr-M project: milestones in space radio astronomyPhys. Usp. 67 768–778 (2024)
    07.87.+v, 95.55.−n, 98.80.Es (all)
  7. M.Ya. Marov, S.I. Ipatov “Migration processes in the Solar System and their role in the evolution of the Earth and planetsPhys. Usp. 66 2–31 (2023)
    96.10.+i, 96.20.Br, 96.30.−t, 97.83.-j (all)
  8. P. Drobinski, A. Tantet “Integration of climate variability and climate change in renewable energy planningPhys. Usp. 65 1119–1128 (2022)
    88.40.−j, 88.50.−k, 92.60.Ry (all)
  9. E.N. Ragozin, E.A. Vishnyakov et alSoft X-ray spectrometers based on aperiodic reflection gratings and their applicationPhys. Usp. 64 495–514 (2021)
    07.60.−j, 07.85.−m, 07.85.Fv, 07.85.Nc, 07.87.+v, 42.79.−e (all)
  10. I.D. Novikov, S.F. Likhachev et alObjectives of the Millimetron Space Observatory science program and technical capabilities of its realizationPhys. Usp. 64 386–419 (2021)
    07.87.+v, 96.30.−t, 96.55.+z, 97.60.Lf, 98.80.Es (all)
  11. M.L. Litvak, A.B. Sanin “Water in the Solar systemPhys. Usp. 61 779–792 (2018)
    96.12.−a, 96.20.−n, 96.30.−t (all)
  12. V.D. Kuznetsov “Space solar research: achievements and prospectsPhys. Usp. 58 621–629 (2015)
    07.87.+v, 96.60.−j (all)
  13. N.S. Kardashev, I.D. Novikov et alReview of scientific topics for Millimetron space observatoryPhys. Usp. 57 1199–1228 (2014)
    07.87.+v, 95.55.−n, 97.10.−q, 98.62.−g, 98.80.−k (all)
  14. 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)
  15. O.I. Korablev “Space-based spectroscopy of Mars: new methods and new resultsPhys. Usp. 56 722–729 (2013)
    01.10.Fv, 07.87.+v, 96.12.−a, 96.30.Gc (all)
  16. The climate of the Earth (Scientific session of the Physical Sciences Division of the Russian Academy of Sciences, 12 April 2011)Phys. Usp. 55 103–108 (2012)
    01.10.Fv, 89.60.−k, 92.60.Ry, 92.70.−j (all)
  17. A.V. Byalko “Relaxation theory of climatePhys. Usp. 55 103–108 (2012)
    89.60.−k, 92.60.Ry, 92.70.−j (all)
  18. A.G. Lanin, I.I. Fedik “Selecting and using materials for a nuclear rocket engine reactorPhys. Usp. 54 305–318 (2011)
    01.65.+g, 07.87.+v, 81.05.Je (all)
  19. V.A. Sadovnichy “S N Vernov as a Moscow University scientistPhys. Usp. 54 185–189 (2011)
    01.60.+q, 07.87.+v, 94.20.−y (all)
  20. M.I. Panasyuk “Coming of age and development of space physics at Moscow State University. Radiation in space: the legacy of S N VernovPhys. Usp. 54 190–202 (2011)
    01.65.+g, 07.87.+v, 94.20.wq (all)
  21. V.D. Kuznetsov “Space research of the SunPhys. Usp. 53 947–954 (2010)
    07.87.+v, 52.35.Vd, 96.60.−j (all)
  22. Yu.D. Kotov “High-energy solar flare processes and their investigation onboard Russian satellite missions CORONASPhys. Usp. 53 619–631 (2010)
    07.87.+v, 95.55.Ev, 96.60.−j (all)
  23. N.A. Armand, Yu.V. Gulyaev et alResults of solar wind and planetary ionosphere research using radiophysical methodsPhys. Usp. 53 517–523 (2010)
    94.20.−y, 96.50.Ci, 96.30.−t (all)
  24. V.D. Kuznetsov “Space research at the Pushkov Institute of Terrestrial Magnetism, Ionosphere and Radio Wave Propagation, Russian Academy of SciencesPhys. Usp. 53 528–534 (2010)
    07.87.+v, 94.20.−y, 94.80.+g (all)
  25. V.S. Beskin “School of Modern Astrophysics — 2009Phys. Usp. 52 1185–1187 (2009)
    01.10.Fv, 96.30.−t, 96.60.−j (all)
  26. L.M. Zelenyi, A.V. Zakharov, L.V. Ksanfomality “The Solar System: current understanding and future prospectsPhys. Usp. 52 1056–1076 (2009)
    96.10.+i, 96.30.−t, 97.82.−j (all)
  27. Commemoration of the centenary of the birth of Academician V A Kotel’nikov (Joint scientific session of the Physical Sciences Division of the Russian Academy of Sciences and the Division of Nanotechnologies and Information Technologies of the Russian Academy of Sciences, 17 September 2008)Phys. Usp. 52 183–205 (2009)
    01.10.Fv, 01.60.+q, 01.65.+g, 02.70.−c, 03.65.Ta, 43.30.+m, 43.58.+z, 89.70.−a, 91.50.Ga, 95.55.−n, 96.30.−t (all)
  28. L.M. Zelenyi, N.A. Armand “Vladimir Aleksandrovich Kotel’nikov and Solar System studiesPhys. Usp. 52 190–197 (2009)
    01.65.+g, 95.55.−n, 96.30.−t (all)
  29. O.I. Korablev “Study of the atmospheres of the terrestrial planetsPhys. Usp. 48 626–635 (2005)
    96.30.−t, 96.35.Hv, 96.35.Cp (all)
  30. T. Owen, S. Atreya, H. Niemann “A ’wild surmise’: first results from the Huygens probe into Titan’s atmospherePhys. Usp. 48 635–638 (2005)
    96.30.−t, 96.35.−j, 96.35.Hv (all)
  31. L.P. Mezhov-Deglin “Low-temperature physics under microgravity. Findings of the Chernogolovka Workshop 2002Phys. Usp. 46 89–93 (2003)
    07.20.Mc, 07.87.+v, 67.57.−z (all)
  32. Yu.A. Surkov “Scientific instrument making in space explorationPhys. Usp. 43 946–947 (2000)
    07.07.Df, 07.87.+v, 95.55.−n, 95.55.Pe (all)
  33. A.S. Monin, Yu.A. Shishkov “Climate as a problem of physicsPhys. Usp. 43 381–406 (2000)
    89.60.+x, 92.60.−e, 92.60.Ry, 92.90.+x (all)
  34. M.N. Izakov “Self-organization and information for planets and ecosystemsPhys. Usp. 40 1035–1042 (1997)
    05.70.Ln, 87.10.+e, 96.30.−t, 89.60.+x (all)
  35. N.M. Astaf’eva “Wavelet analysis: basic theory and some applicationsPhys. Usp. 39 1085–1108 (1996)
    02.30.−f, 02.90.+p, 92.60.−e, 92.60.Ry (all)
  36. M.I. Pudovkin, O.M. Raspopov “Physical mechanism of the action of solar activity and other geophysical factors on the state of the lower atmosphere, meteorological parameters, and climatePhys. Usp. 36 (7) 644–647 (1993)
    96.60.qe, 96.60.Vg, 92.60.Ry, 94.30.Lr (all)
  37. M.D. Kislik “Experimental check of the general theory of relativity and the oblateness of the sunSov. Phys. Usp. 28 85–86 (1985)
    04.20.−q, 04.25.Nx, 96.30.−t, 96.12.De, 95.30.Sf, 45.50.Pk (all)
  38. É.R. Mustel’ “Action of Solar Particle Fluxes on the Lower Layers of the Earth’s AtmosphereSov. Phys. Usp. 16 739–740 (1974)
    96.60.Q−, 92.60.hv, 94.30.Lr, 92.60.Ry, 92.60.Qx (all)
  39. G.V. Rozenberg “International symposium on the investigation of radiation processesSov. Phys. Usp. 8 325–336 (1965)
    92.60.Vb, 92.60.Bh, 92.60.Ry, 92.60.hv (all)
  40. A.F. Kononkov “Mikhail Fedorovich Spasskii — eminent russian physicist and meteorologist of the 19TH century (on his 150th birthday and the 100th anniversary of his death)Sov. Phys. Usp. 2 620–623 (1959)
    92.60.hv, 92.60.Ry, 92.60.Pw, 92.60.Nv (all)
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