PACS numbers

04.20.Fy Canonical formalism, Lagrangians, and variational principles 04.50.+h Gravity in more than four dimensions, Kaluza-Klein theory, unified field theories; alternative theories of gravity 98.80.Es Observational cosmology (including Hubble constant, distance scale, cosmological constant, early Universe, etc)
  1. A.V. Toporensky, S.B. Popov “The Hubble flow: an observer’s perspective57 708–713 (2014)
    98.62.Py, 98.80.−k, 98.80.Es (all)
  2. V.G. Kurt, N.N. Shakhvorostova “CMB spectral distortions during the recombination of the primeval plasma in the early Universe57 389–406 (2014)
    52.40.Db, 98.70.Vc, 98.80.Es (all)
  3. B.P. Schmidt “The path to measuring an accelerating Universe56 (10) (2013)
    01.10.Fv, 95.36.+x, 97.60.Bw, 98.80.Es (all)
  4. S. Perlmutter “Measuring the acceleration of the cosmic expansion using supernovae56 (10) (2013)
    01.10.Fv, 95.36.+x, 97.60.Bw, 98.80.Es (all)
  5. O.V. Verkhodanov, A.G. Doroshkevich “Sky pixelization for the analysis of extended emission56 801–812 (2013)
    95.75.−z, 95.85.Bh, 98.80.−k, 98.80.Es (all)
  6. Astrophysics and astronomy (Scientific session of the Physical Sciences Division of the Russian Academy of Sciences, 26 January 2011)54 1061–1084 (2011)
    01.10.Fv, 04.20.−q, 11.27.+d, 89.60.Gg, 96.30.Cw, 96.30.Ys, 97.60.Jd, 97.60.Lf, 97.80.−d, 97.82.−j, 98.62.Sb, 98.80.Es (all)
  7. O.S. Sazhina, M.V. Sazhin et alSearch for cosmic strings using optical and radio astronomy methods54 1072–1077 (2011)
    11.27.+d, 98.62.Sb, 98.80.Es (all)
  8. D.P. Skulachev “Cosmic microwave background anisotropy data correlation in WMAP and Relikt-1 experiments53 373–376 (2010)
    95.55.−n, 95.75.−z, 98.80.Es (all)
  9. V.A. Rubakov, P.G. Tinyakov “Infrared-modified gravities and massive gravitons51 759–792 (2008)
    04.50.+h, 11.10.Lm, 95.35.+d (all)
  10. A.D. Chernin “Dark energy and universal antigravitation51 253–282 (2008)
    04.50.+h, 12.10.Kt, 95.36.+x, 98.80.−k (all)
  11. A.O. Barvinskii “Cosmological branes and macroscopic extra dimensions48 545–575 (2005)
    04.50.+h, 11.25.−w, 98.80.Cq (all)
  12. A.A. Logunov, M.A. Mestvirishvili, V.A. Petrov “How were the Hilbert-Einstein equations discovered?47 607–621 (2004)
    01.65.+g, 04.20.Cv, 04.20.Fy (all)
  13. V.A. Rubakov “Multidimensional models of particle physics46 211–218 (2003)
    04.50.+h, 11.25.Mj, 11.25.Uv (all)
  14. I.D. Novikov “’Big Bang’ echo (cosmic microwave background observations)44 817–818 (2001)
    95.85.Bh, 98.80.Cq, 98.80.Es (all)
  15. I.D. Novikov, I.D. Karachentsev et alScientific session of the Division of General Physics and Astronomy of the Russian Academy of Sciences (28 February, 2001)44 817–818 (2001)
    01.10.Fv, 95.85.Bh, 98.80.Cq, 98.80.Es, 95.35.+d, 98.65.−r, 04.70.-S, 97.80.Jp, 98.35.Jk, 47.37.+q, 97.60.Gb, 97.60.Jd (all)
  16. L.I. Men’shikov, A.N. Pinzul “The Hawking effect in the sudden gravitational collapse model38 1031–1036 (1995)
    04.50.+h
  17. M.A. Markov “Can the asymptotic freedom of gravitational interactions violate the energy dominance of classical cosmology?37 901–902 (1994)
    04.50.+h
  18. M.A. Markov “Possible existence of asymptotic freedom of gravitational interactions in nature37 57–68 (1994)
    04.50.+h
  19. A.D. Sakharov “Violation of CP in variance, C asymmetry, and baryon asymmetry of the universe34 (5) 392–393 (1991)
    98.80.Cq, 98.80.Es, 11.30.Er, 14.65.−q, 95.30.Cq (all)
  20. A.D. Sakharov “Spectral density of eigenvalues of the wave equation and vacuum polarization34 (5) 395–400 (1991)
    04.20.Fy, 04.50.+h, 98.80.Es (all)
  21. A.D. Sakharov “Cosmological transitions with changes in the signature of the metric34 (5) 409–413 (1991)
    98.80.Cq, 97.60.Lf, 04.50.+h (all)
  22. A.D. Sakharov “Baryon asymmetry of the universe34 (5) 417–421 (1991)
    11.30.Er, 98.80.Cq, 12.10.Dm, 98.80.Es (all)
  23. Ya.A. Smorodinskii “The early universe32 943–943 (1989)
    01.30.Vv, 98.80.Es, 98.80.Cq, 95.35.+d (all)
  24. L.P. Grishchuk “Gravitational-wave astronomy31 940–954 (1988)
    04.30.Db, 97.60.Gb, 97.80.Gm, 97.30.Qt, 98.80.Es, 04.60.−m (all)
  25. N.S. Kardashev, V.N. Lukash, I.D. Novikov “Observational cosmology and cosmological models30 82–82 (1987)
    98.80.Es, 98.80.Cq, 98.65.Dx (all)
  26. I.Ya. Aref’eva, I.V. Volovich “Supersymmetry: Kaluza-Klein theory, anomalies, and superstrings28 694–708 (1985)
    04.50.+h, 11.30.Pb, 11.25.Mj, 04.65.+e, 11.30.Ly, 11.30.Rd (all)
  27. B.V. Vainer, Yu.A. Shchekinov “The origin of deuterium28 414–431 (1985)
    98.80.Es, 98.80.Ft, 98.80.Bp, 98.80.Cq, 97.10.Cv (all)
  28. L.D. Faddeev “The energy problem in Einstein’s theory of gravitation (Dedicated to the memory of V. A. Fock)25 130–142 (1982)
    04.20.Fy, 04.50.+h (all)
  29. V.P. Vizgin, Ya.A. Smorodinskii “From the equivalence principle to the equations of gravitation22 489–513 (1979)
    04.20.Cv, 04.50.+h, 01.60.+q (all)
  30. Yu.N. Efremov, S.B. Novikov, P.V. Shcheglov “Prospects for development of ground-based optical astronomy18 151–160 (1975)
    98.80.Es, 98.54.Aj, 97.60.Gb, 95.30.Sf, 98.62.Js, 95.55.Cs (all)
  31. A.M. Gal’per, V.G. Kirillov-Ugryumov, B.I. Luchkov “Observational gamma astronomy17 186–198 (1974)
    98.70.Rz, 98.70.Sa, 98.80.Es, 97.60.Gb (all)
  32. P.V. Shcheglov “Astroclimatic Conditions in Central Asia and Kazakhstan14 792–794 (1972)
    97.30.Qt, 97.60.Bw, 95.75.De, 97.10.Ri, 98.80.Es, 97.10.Cv (all)
  33. Ya.M. Kramarovskii, V.P. Chechev “Does the charge of the electron vary with the age of the universe?13 628–631 (1971)
    98.80.Es, 98.80.Jk, 98.80.Bp, 95.30.Sf, 98.80.Cq (all)
  34. Ya.B. Zel’dovich “The cosmological constant and the theory of elementary particles11 381–393 (1968)
    98.80.Es, 98.80.Cq, 95.30.Cq, 98.54.Aj (all)
  35. Ya.B. Zel’dovich “The "hot" model of the Universe9 602–617 (1967)
    98.80.Cq, 95.30.Qd, 98.80.Es, 98.62.Ra (all)
  36. S.G. Suvorov “Einstein’s philosophical views and their relation to his physical opinions8 578–609 (1966)
    01.70.+w, 42.50.−p, 04.20.−q, 04.50.+h, 98.80.Jk (all)
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