PACS numbers

29.17.+w Electrostatic, collective, and linear accelerators 41.75.Ht Relativistic electron and positron beams 52.27.Ny Relativistic plasmas 52.35.Qz Microinstabilities (ion-acoustic, two-stream, loss-cone, beam-plasma, drift, ion- or electron-cyclotron, etc.)
  1. N.A. Vinokurov, A.M. Barnyakov et alElectron guns at the Budker Institute of Nuclear Physics SB RAS: prospects for the use of photocathodes with nanosecond and subpicosecond laser drivers60 1034–1038 (2017)
    29.25.Bx, 41.75.Ht, 85.60.Ha (all)
  2. V.V. Zheleznyakov, E.Ya. Zlotnik et alDouble plasma resonance nd its manifestations in radio astronomy59 997–1020 (2016)
    96.60.P−, 96.60.Tf, 97.60.Gb, 52.35.−g, 52.35.Hr, 52.35.Qz (all)
  3. Yu.I. Maltseva, F.A. Emanov et alDistributed beam loss monitor based on the Cherenkov effect in an optical fiber58 516–519 (2015)
    29.27.−a, 41.60.Bq, 41.75.Ht, 42.81.−i (all)
  4. S.A. Pikuz (Jr.), A.Ya. Faenov et alProduction of exotic states of matter with the use of X-rays generated by focusing a petawatt laser pulse onto a solid target57 702–707 (2014)
    32.80.−t, 52.27.Ny, 52.38.Ph, 52.70.La (all)
  5. V.N. Tsytovich “On the physical interpretation of Thomson scattering in a plasma56 180–191 (2013)
    52.27.Lw, 52.35.Dm, 52.35.Fp, 52.35.Qz (all)
  6. S. Peigné, A.V. Smilga “Energy losses in relativistic plasmas: QCD versus QED52 659–685 (2009)
    12.38.Mh, 25.75.−q, 52.27.Ny, 61.85.+p (all)
  7. M. Birau, M.A. Krasil’nikov et alProblems in the theory of relativistic plasma microwave electronics40 975–992 (1997)
    41.75.Ht, 52.60.+h, 52.70.Gw (all)
  8. B.N. Shvilkin “The role of nonquasineutrality in instable plasma oscillations37 607–608 (1994)
    52.35.Qz, 52.35.Kt (all)
  9. 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)
  10. S.A. Bunyatov, S.S. Gershtein et alVenedikt Petrovich Dzhelepov (on his eightieth birthday)36 (5) 447–449 (1993)
    01.60.+q, 29.20.Lq, 29.17.+w, 21.30.−x, 24.70.+s (all)
  11. N.L. Aleksandrov, A.P. Napartovich “Phenomena in gases and plasmas with negative ions36 (3) 107–128 (1993)
    52.25.Fi, 52.35.Qz, 52.27.Cm, 51.50.+v, 52.20.Fs (all)
  12. V.I. Petviashvili “Nonlinear and relativistic effects in plasma35 (10) 902–902 (1992)
    01.30.Vv, 52.35.Mw, 52.35.Hr, 52.35.Qz, 52.35.Ra (all)
  13. B.A. Trubnikov “Constrictions in a relativistic pinch with a longitudinal magnetic field34 (11) 1018–1020 (1991)
    52.27.Ny, 52.58.Lq, 52.65.Kj, 52.80.−s (all)
  14. G.D. Fleishman “Transition radiation of a relativistic particle moving along a curve34 (1) 86–96 (1991)
    41.60.−m, 52.27.Ny, 52.25.Mq (all)
  15. L.M. Barkov, S.T. Belyaev et alVeniamin Aleksandrovich Sidorov (in celebration of his sixtieth birthday)33 (12) 1076–1077 (1990)
    01.60.+q, 21.10.Ma, 29.17.+w, 24.10.Pa, 41.75.Fr (all)
  16. V.G. Baryshevskii, V.V. Tikhomirov “Synchrotron-type radiation processes in crystals and polarization phenomena accompanying them32 1013–1032 (1989)
    41.60.Ap, 29.17.+w, 41.75.Fr, 41.75.Ht, 29.27.Hj, 61.50.Ah (all)
  17. D.F. Alferov, Yu.A. Bashmakov, P.A. Cherenkov “Radiation from relativistic electrons in a magnetic undulator32 200–227 (1989)
    41.60.−m, 29.20.Lq, 29.20.Dh, 41.75.Ht, 29.27.Hj (all)
  18. 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)
  19. S.S. Kalmykova, V.I. Kurilko “Physical mechanisms for the hydrodynamic beam-plasma instability31 750–762 (1988)
    52.35.Qz
  20. 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)
  21. V.V. Zheleznyakov, V.V. Kocharovskii, V.V. Kocharovskii “Cyclotron superradiance in a plasma as a classical analog of Dicke superradiance30 1009–1010 (1987)
    32.50.+d, 32.80.Bx, 52.35.Hr, 52.35.Qz (all)
  22. Yu.M. Ado, S.T. Belyaev et alAleksei Aleksandrovich Naumov (Obituary)29 898–899 (1986)
    01.60.+q, 29.20.Hm, 41.75.Fr, 29.17.+w, 29.20.Lq, 29.20.Fj (all)
  23. M.V. Kuzelev, A.A. Rukhadze et alRelativistic plasma UHF electronics28 724–726 (1985)
    52.27.Ny, 52.75.−d, 52.35.Hr, 52.25.−b, 84.40.−x (all)
  24. Yu.M. Ado “High-energy charged-particle accelerators28 54–69 (1985)
    29.20.Dh, 29.20.Lq, 41.75.Ak, 29.27.Bd, 29.17.+w, 41.75.Fr (all)
  25. A.P. Aleksandrov, S.T. Belyaev et alViktor Konstantinovich Voitovetskii (Obituary)27 79–80 (1984)
    01.60.+q, 29.17.+w, 29.40.−n (all)
  26. G.N. Flerov, V.S. Barashenkov “Practical applications of heavy ion beams18 783–793 (1975)
    29.17.+w, 29.20.Lq, 21.65.+f, 61.80.Jh, 74.72.−h, 74.25.Sv (all)
  27. M.A. Markov “The future of physics (future generations of particle accelerators)16 913–925 (1974)
    29.17.+w, 98.54.Aj, 97.60.Jd, 97.60.Lf, 41.75.Fr (all)
  28. A.V. Timofeev “Cyclotron oscillations of plasma in an inhomogeneous magnetic field16 445–458 (1974)
    52.50.−b, 52.35.Fp, 52.35.Qz, 52.55.Lf (all)
  29. M.S. Rabinovich, V.N. Tsytovich “New Collective Methods of Charged-Particle Acceleration17 459–460 (1974)
    41.75.Ht, 29.17.+w, 52.27.Ny, 52.35.Qz (all)
  30. Yu.P. Vakhrushin, I.M. Matora “Linear induction accelerators—new generators of high power relativistic electron beams16 416–426 (1973)
    29.17.+w, 41.75.Ht, 29.27.Bd, 25.60.Pj (all)
  31. N.S. Erokhin, S.S. Moiseev “Problems of the theory of linear and nonlinear transformation of waves in inhomogeneous media16 64–81 (1973)
    52.35.Hr, 52.40.Mj, 52.50.−b, 52.35.Qz (all)
  32. V.P. Silin “Anomalous Nonlinear Dissipation of UHF Waves in a Plasma14 538–540 (1972)
    52.35.Mw, 52.35.Qz, 52.35.Ra (all)
  33. Yu.A. Plis, L.M. Soroko “The current state of the physics and technology of obtaining polarized particle beams15 318–339 (1972)
    34.70.+e, 41.75.Fr, 39.10.+j, 32.10.Dk, 29.17.+w, 29.20.Lq (all)
  34. M.V. Nezlin “Instability of beams of charged particles in a Plasma13 608–627 (1971)
    52.35.Qz, 52.50.Gj (all)
  35. A.D. Vlasov “Methods of Increasing the Proton Current at the Output of a Linear Accelerator13 668–669 (1971)
    29.17.+w, 41.75.Ak, 29.27.Ac (all)
  36. G.V. Voskresenskii, V.N. Kurdyumov “Radiative Losses of Electron Rings in Inhomogeneous Structures13 669–669 (1971)
    29.20.Dh, 41.75.Fr, 41.75.Ht, 41.85.−p, 29.27.−a (all)
  37. A.I. Akhiezer, R.V. Polovin “Criteria for wave growth14 278–285 (1971)
    52.35.Qz, 52.35.Fp (all)
  38. A.I. Alikhan’yan, S.A. Kheifets “Contemporary status of accelerator physics and technique13 353–369 (1970)
    29.20.Lq, 41.75.Ak, 29.20.Hm, 29.17.+w, 29.20.Dh, 29.27.−a (all)
  39. M.S. Ioffe, B.B. Kadomtsev “Plasma containment in adiabatic traps13 225–246 (1970)
    52.55.Lf, 52.35.Py, 52.35.Qz (all)
  40. S.T. Belyaev, V.A. Sidorov, B.V. Chirikov “Gersh Itskovich Budker (in honor of his 50th birthday)11 916–918 (1969)
    01.60.+q, 29.20.−c, 52.27.Ny (all)
  41. A.A. Rukhadze, V.P. Silin “Kinetic theory of drift-dissipative instabilities of a plasma11 659–677 (1969)
    52.35.Qz, 52.35.Fp, 52.25.Dg (all)
  42. A.A. Kolomenskii “Development of V. I. Veksler’s ideas in the field of accelerators10 737–746 (1968)
    29.17.+w, 29.20.Lq, 29.20.Dh, 29.20.Hm (all)
  43. A.L. Mintz “Development of research on the creation of cybernetic accelerators10 747–749 (1968)
    29.20.Lq, 29.17.+w (all)
  44. Ya.B. Fainberg “Acceleration of charged particles in a plasma10 750–758 (1968)
    29.17.+w, 52.59.−f, 41.75.Fr, 52.35.Hr (all)
  45. A.A. Tyapkin “In search of an "irrational" idea8 630–632 (1966)
    29.17.+w, 13.40.Ks, 13.85.−t (all)
  46. V.A. Vagin, V.I. Kotov, I.N. Semenyushkin “Methods of high-energy particle separation7 305–329 (1964)
    13.20.Cz, 13.25.Cq, 13.30.Ce, 14.40.Aq, 29.17.+w (all)
  47. I.I. Pershin “Physical measurements on photographs of particle tracks in bubble chambers4 260–273 (1961)
    29.40.Gx, 29.40.Rg, 29.17.+w (all)
  48. A.A. Vedenov, E.P. Velikhov, R.Z. Sagdeev “STABILITY OF PLASMA4 332–369 (1961)
    52.35.Qz, 52.30.−q (all)
  49. V.I. Veksler “The present state of the problem of acceleration of atomic particles1 54–61 (1958)
    29.17.+w, 41.75.Fr, 41.75.Ak, 29.20.Hm, 21.30.−x, 29.20.Lq (all)
  50. E.Z. Gusakov, A.Yu. Popov “Low-power-threshold parametric decay instabilities of powerful microwave beams in toroidal thermonuclear devices”, accepted
    52.35.Hr, 52.35.Mw, 52.35.Qz (all)
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