PACS numbers

28.41.−i Fission reactors 28.65.+a Accelerator-driven transmutation of nuclear waste 29.25.Dz Neutron sources 52.55.Fa Tokamaks, spherical tokamaks 52.55.Jd Magnetic mirrors, gas dynamic traps
  1. A.V. Burdakov, V.V. Postupaev “Multiple-mirror trap: a path from Budker magnetic mirrors to linear fusion reactor61 582–600 (2018)
    28.52.Av, 52.50.Gj, 52.55.Jd (all)
  2. A.A. Ivanov, V.V. Prikhodko “Gas dynamic trap: experimental results and future prospects60 509–533 (2017)
    28.52.−s, 52.50.−b, 52.55.Jd (all)
  3. N.N. Aruev “The application of dynamic mass spectrometers for investigations in the field of thermonuclear synthesis60 91–107 (2017)
    52.55.Fa, 82.80.Ms, 82.80.Rt (all)
  4. E.V. Lychagin, D.P. Kozlenko et alNeutron physics at the INR — 60 years of the I M Frank Neutron Physics Laboratory59 254–263 (2016)
    28.20.−v, 29.25.Dz, 61.05.F− (all)
  5. V.L. Aksenov, A.M. Balagurov “Neutron diffraction on pulsed sources59 279–303 (2016)
    29.25.Dz, (all)
  6. D.V. Yurov, V.V. Prikhodko “Hybrid systems for transuranic waste transmutation in nuclear power reactors: state-of-the art and future prospects57 1118–1129 (2014)
    28.41.−i, 28.65.+a, 29.25.Dz, 52.55.Fa, 52.55.Jd (all)
  7. L.I. Ponomarev “Ya.B. Zeldovich and nuclear power57 215–218 (2014)
    01.65.+g, 28.41.−i, 28.50.−k (all)
  8. Commemoration of the 90th anniversary of the birth of Andrei Dmitrievich Sakharov (Scientific session of the Physical Sciences Division, Russian Academy of Sciences, 25 May 2011)55 169–216 (2012)
    01.10.Fv, 01.60.+q, 01.65.+g, 01.75.+m, 04.30.−w, 04.70.−s, 28.52.−s, 28.70.+y, 52.55.Fa, 95.36.+x, 98.70.Vc, 98.80.Cq, 98.80.−k (all)
  9. E.A. Azizov “Tokamaks: from A D Sakharov to the present (the 60-year history of tokamaks)55 190–203 (2012)
    01.65.+g, 28.52.−s, 52.55.Fa (all)
  10. V.I. Krauz, Yu.V. Martynenko et alNanostructures in controlled thermonuclear fusion devices53 1015–1038 (2010)
    52.27.Lw, 52.55.Fa, 68.37.−d (all)
  11. V.P. Smirnov “Commemorating the 80th anniversary of the birth of Boris Borisovich Kadomtsev (opening address)52 723–724 (2009)
    01.60.+q, 01.65.+g, 52.55.Fa (all)
  12. S.V. Mirnov “Academician B B Kadomtsev and the International Thermonuclear Experimental Reactor (ITER)52 725–729 (2009)
    01.65.+g, 28.52.−s, 52.55.Fa (all)
  13. G.A. Mesyats, B.M. Bolotovskii et alCommemoration of the centenary of the birth of Academician I M Frank (Scientific session of the Physical Sciences Division of the Russian Academy of Sciences, 22 October 2008)52 377–413 (2009)
    01.10.Fv, 01.60.+q, 01.65.+g, 03.75.Be, 28.20.−v, 28.41.−i, 41.60.Bq, 41.60.Dk (all)
  14. A.N. Sissakian, M.G. Itkis “I M Frank and the development of the Joint Institute for Nuclear Research52 388–394 (2009)
    01.65.+g, 28.20.−v, 28.41.−i (all)
  15. V.L. Aksenov “Pulsed nuclear reactors in neutron physics52 406–413 (2009)
    01.65.+g, 28.20.−v, 28.41.−i (all)
  16. G.V. Kiselev “Errata and amendments to the paper by G V Kiselev ’L D Landau in the Soviet Atomic Project: a documentary study’ [Uspekhi Fizicheskikh Nauk, 2008, 178 (9) 947 — 990]51 1371 (2008)
    01.65.+g, 28.41.−i, 28.70.+y, 99.10.−x (all)
  17. G.V. Kiselev “L D Landau in the Soviet Atomic Project: a documentary study51 911–954 (2008)
    01.65.+g, 28.41.−i, 28.70.+y (all)
  18. G.V. Kiselev, V.N. Konev “History of the realization of the thorium regime in the Soviet Atomic Project50 1259–1282 (2007)
    01.65.+g, 28.41.−i, 28.50.−k (all)
  19. I.P. Eremeev “Electrophotonuclear energy cycle47 1221–1237 (2004)
    25.20.−x, 25.85.Jg, 28.41.−i (all)
  20. K.A. Razumova “Transport barrier formation in a tokamak plasma44 311–315 (2001)
    52.30.−q, 52.35.−g, 52.55.Fa (all)
  21. K.A. Razumova, A.V. Marchenko “Scientific session of the Division of General Physics and Astronomy of the Russian Academy of Sciences (October 25, 2000)44 311–315 (2001)
    01.10.Fv, 52.30.−q, 52.35.−g, 52.55.Fa, 83.10.Dd, 83.80.Nb, 92.10.Rw (all)
  22. V.D. Shafranov “Trends in magnetic helical systems for CNF42 720–726 (1999)
    52.55.−s, 52.55.fa
  23. S.V. Putvinskii “Can the future world energy system be free of nuclear fusion?41 1127–1137 (1998)
    52.55.Fa, 89.30.+f, 89.60.+x
  24. V.E. Zakharov, E.A. Kuznetsov “Hamiltonian formalism for nonlinear waves40 1087–1116 (1997)
    52.30.−q, 52.35.Ra, 52.55.Fa (all)
  25. V.V. Yan’kov “Attractors and frozen-in invariants in turbulent plasma40 477–493 (1997)
    52.30.−q, 52.35.Ra, 52.55.Fa (all)
  26. B.B. Kadomtsev “From MTR to ITER39 419–427 (1996)
  27. E.N. Avrorin, V.A. Belugin et alAleksandr Ivanovich Palovskii (Obituary)36 (11) 1079–1080 (1993)
    01.60.+q, 29.25.Dz, 29.20.Fj, 29.17.+w, 52.50.Dg, 52.80.Mg (all)
  28. V.L. Aksenov “Research on high-temperature superconductors using the IBR-2 high-flux pulsed reactor34 (8) 729–730 (1991)
    29.25.Dz, 28.41.Pa, 28.50.Ft, 28.20.Gd, 28.20.Cz (all)
  29. B.L. Al’tshuler “The scientific works of A. D. Sakharov34 (5) 362–374 (1991)
    52.55.Fa, 28.52.−s, 98.80.Cq, 11.30.Er, 04.60.−m, 11.25.−w (all)
  30. G.C. Dijkhuis “Report on Second International Symposium on Ball Lightning34 (1) 97–97 (1991)
    01.10.Fv, 52.80.Mg, 52.55.Fa (all)
  31. A.I. Morozov “Development of the principles of a quasi-steady-state plasma accelerator with an intrinsic magnetic field with a power of 109-1011 W33 (7) 576–577 (1990)
    52.59.−f, 52.65.Kj, 52.25.Xz, 52.55.Fa, 52.30.−q (all)
  32. E.P. Velikhov, I. Golovin et alVitalii Dmitrievich Shafranov (on his sixtieth birthday)32 1113–1114 (1989)
    01.60.+q, 52.55.Fa, 52.35.Hr, 52.35.Tc (all)
  33. A.P. Aleksandrov, E.P. Velikhov et alBoris Borisovich Kadomtsev (on his sixtieth birthday)31 1035–1036 (1988)
    01.60.+q, 52.25.Dg, 52.55.Fa, 52.35.Ra, 52.35.Qz, 01.30.Ee (all)
  34. D.D. Ryutov “Open-ended traps31 300–327 (1988)
    52.55.Jd, 52.55.Lf, 52.35.Py, 52.25.Vy, 28.52.−s (all)
  35. L.M. Barkov, V.G. Dudnikov et alGennadii Ivanovich Dimov (on his sixtieth birthday)31 281–282 (1988)
    01.60.+q, 29.20.Dh, 29.20.Lq, 29.17.+w, 41.75.Ak, 52.55.Jd (all)
  36. Seventieth anniversary of Soviet physics30 921–926 (1987)
    01.10.Hx, 72.20.Ee, 52.55.Fa (all)
  37. A.V. Nedospasov “Physics of near-wall plasma in tokamaks30 620–627 (1987)
    52.40.Hf, 52.55.Fa, 52.55.Rk, 52.25.Fi, 52.35.Ra, 52.80.Mg (all)
  38. A.I. Frank “Optics of ultracold neutrons and the neutron-microscope problem30 110–133 (1987)
    03.75.Be, 41.85.Gy, 29.25.Dz, 14.20.Dh (all)
  39. I.M. Frank, Yu.M. Ostanevich “Seminar dedicated to the seventieth anniversary of the date of birth of F. L. Shapiro28 1144–1148 (1985)
    01.30.Cc, 13.40.Em, 14.20.Dh, 25.40.Lw, 29.25.Dz, 29.30.Hs (all)
  40. A.M. Andrianov, I.I. Gurevich et alSamuil Markovich Osovets (Obituary)27 318–319 (1984)
    01.60.+q, 01.10.Cr, 52.55.Fa, 52.58.Lq, 89.30.Jj (all)
  41. V.E. Golant “Ultrahigh-frequency Methods of Plasma Heating14 540–541 (1972)
    52.50.Qt, 52.55.Jd, 52.25.Os, 52.35.Hr, 52.70.Ds (all)
  42. L.A. Artsimovich “Heating of Ions in "Tokamak" Machines12 810–810 (1970)
    52.50.−b, 52.20.Fs, 52.55.Fa, 52.35.Py, 52.25.Tx (all)
  43. A.A. Galeev, R.Z. Sagdeev “Paradoxes of Classical Diffusion of Plasma in Toroidal Magnetic Traps12 810–811 (1970)
    52.55.Hc, 52.55.Fa, 52.40.Hf, 52.25.Dg (all)
  44. M.S. Rabinovich, I.S. Shpigel’ “Plasma Containment in the Stellarator ’Liven’-1′ of the Physics Institute of the USSR Academy of Sciences12 811–812 (1970)
    52.55.Fa, 52.55.Hc, 52.25.Fi, 52.20.−j (all)
  45. L.A. Artsimovich “The prospects of investigations of the problem of controlled nuclear fusion10 117–126 (1967)
    89.30.Jj, 52.55.Lf, 52.55.Jd, 28.52.Av, 52.35.Py (all)
  46. B.B. Kadomtsev “Plasma instability and controlled thermonuclear reactions10 127–130 (1967)
    52.35.Py, 52.35.Fp, 52.55.Fa, 28.52.Cx (all)
  47. I.M. Podgornyi “Confinement of high-density plasma in adiabatic traps8 39–51 (1965)
    52.55.Jd, 52.50.Sw, 52.35.Py (all)
  48. I.V. Kurchatov “Certain results obtained in research on controlled thermonuclear reactions in the U.S.S.R4 274–278 (1961)
    52.55.Jd, 28.52.−s (all)
  49. A.A. Ivanov, A.N. Smirnov et alAccelerator-based neutron source for boron neutron capture therapy”, accepted
    29.17.+w, 29.25.Dz, 87.19.xj, 87.53.−j, 87.53.Tf (all)
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