PACS numbers

29.20.Hm Cyclotrons 29.27.Ac Beam injection and extraction 29.27.Fh Beam characteristics 41.75.Fr Electron and positron beams 41.85.Lc Particle beam focusing and bending magnets, wiggler magnets, and quadrupoles
  1. Yu.I. Belchenko, V.I. Davydenko et alStudies of ion and neutral beam physics and technology at the Budker Institute of Nuclear Physics SB RAS61 531–581 (2018)
    29.25.Ni, 29.27.Ac, 29.27.Fh, 29.27.Hj, 41.75.−i, 41.75.Ak, 41.75.Cn, 41.85.−p, 41.85.Ar, 52.50.Dg, 52.50.Gj (all)
  2. A.A. Bryazgin, N.K. Kuksanov, R.A. Salimov “Industrial electron accelerators developed at the Budker Institute of Nuclear Physics, SB RAS (BINP)61 601–612 (2018)
    07.77.Ka, 29.20.−c, 41.75.Fr (all)
  3. E.B. Levichev “Low emittance electron storage rings61 29–51 (2018)
    29.20.db, 29.20.dk, 29.27.Ac, 29.27.Bd, 29.27.Eg (all)
  4. S.Yu. Mironov, A.V. Andrianov et alSpatio-temporal shaping of photocathode laser pulses for linear electron accelerators60 1039–1050 (2017)
    29.20.−c, 29.27.Ac, 42.60.By, 42.60.−v (all)
  5. M.K. Eseev, I.N. Meshkov “Traps for storing charged particles and antiparticles in high precision experiments59 304–317 (2016)
    37.10.Ty, 41.75.Fr, 52.27.Ep, 52.27.Jt (all)
  6. B.M. Bolotovskii, A.N. Lebedev et alScientific session of the Physical Sciences Division of the Russian Academy of Sciences and joint meeting of the Academic Councils of FIAN, JINR, INR, and the Scientific Council on elementary particle accelerators, dedicated to the 100th anniversary of the birth of Academician Vladimir Iosifovich Veksler (5 March 2007)50 847–852 (2007)
    25.20.−x, 29.20.Hm, 29.20.Lq (all)
  7. B.M. Bolotovskii, A.N. Lebedev “Academician V I Veksler50 847–852 (2007)
    29.20.Hm, 29.20.Lq (all)
  8. V.F. Tarasenko, S.I. Yakovlenko “On the electron runaway effect and the generation of high-power subnanosecond beams in dense gases49 767–770 (2006)
    41.75.Fr, 51.50.+v, 52.80.Dy (all)
  9. L.P. Babich “Analysis of a new electron-runaway mechanism and of record-high runaway-electron currents achieved in dense-gas discharges48 1015–1037 (2005)
    41.75.Fr, 51.50.+v, 52.80.Dy (all)
  10. V.F. Tarasenko, S.I. Yakovlenko “The electron runaway mechanism in dense gases and the production of high-power subnanosecond electron beams47 887–905 (2004)
    41.75.Fr, 51.50.+v, 52.80.Dy (all)
  11. V.P. Milant’ev “Cyclotron autoresonance and its applications40 1–14 (1997)
    29.20.Hm
  12. V.I. Kurilko, Yu.V. Tkach “Physical mechanisms of generation of coherent radiation in an ultrarelativistic free-electron laser38 231–251 (1995)
    41.60.Cr, 41.75.Fr (all)
  13. V.M. Biryukov, V.I. Kotov, Yu.A. Chesnokov “Steering of high-energy charged-particle beams by bent single crystals37 937–960 (1994)
    29.27.Ac, 29.27.Eg, 61.80.Mk (all)
  14. V.L. Aksenov, A.M. Baldin et alYurii Tsolakovich Oganesyan (on his sixtieth birthday)36 (5) 452–453 (1993)
    01.60.+q, 29.20.Dh, 29.20.Hm, 24.75.+i, 25.85.Ca (all)
  15. Yu.A. Bashmakov “Frontiers of particle beams: observation, diagnosis, and correction34 (2) 208–210 (1991)
    29.20.Dh, 41.75.Fr, 29.27.Bd, 29.27.Fh (all)
  16. 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)
  17. 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)
  18. E.G. Bessonov, A.V. Vinogradov “Undulator and laser sources of soft x rays32 806–812 (1989)
    41.85.Lc, 41.60.Cr, 42.55.Vc (all)
  19. V.I. Arnol’d, L.M. Barkov et alBoris Valerianovich Chirikov (on his sixtieth birthday)31 682–683 (1988)
    01.60.+q, 29.40.Gx, 29.27.−a, 41.75.Fr (all)
  20. I.Kh. Lemberg, V.O. Naidenov, V.Ya. Frenkel’ “The cyclotron of the A. F. loffe Physico-Technical Institute of the Academy of Sciences of the USSR (on the fortieth anniversary of its startup)30 993–1006 (1987)
    01.65.+g, 29.20.Hm, 21.10.Re, 21.10.Ky, 27.30.+t, 23.20.Lv (all)
  21. 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)
  22. V.S. Panasyuk “New types of synchrotrons as dedicated generators of synchrotron and x-ray radiation.29 383–384 (1986)
    29.20.Lq, 29.20.Dh, 41.75.Fr, 29.27.Ac, 29.27.Bd, 41.50.+h (all)
  23. 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)
  24. L.M. Nemenov “The history of the development of the cyclotron over fifty years (1930-1980)24 231–240 (1981)
    29.20.Hm
  25. 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)
  26. V.P. Dmitrievskii, L.I. Lapidus et alVenedikt Petrovich Dzhelepov (on his sixtieth birthday)16 440–441 (1973)
    01.60.+q, 29.20.Hm, 25.40.−h, 24.75.+i (all)
  27. V.N. Baier “Radiative polarization of electrons in storage rings14 695–714 (1972)
    29.20.Dh, 41.75.Fr, 29.27.Hj, 29.27.Bd (all)
  28. 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)
  29. 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)
  30. 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)
  31. V.A. Vanke, V.M. Lopukhin, V.L. Savvin “SUPERNOISELESS CYCLOTRON-WAVE AMPLIFIERS12 743–755 (1970)
    52.35.Hr, 41.75.Fr, 52.35.Fp, 29.20.Hm (all)
  32. 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)
  33. A.I. Ansel’m, S.N. Zhurkov et alGEORGII ABRAMOVICH GRINBERG (on his Seventieth Birthday)13 427–428 (1970)
    01.60.+q, 01.30.Ee, 01.10.Cr, 41.85.Lc (all)
  34. 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)
  35. 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)
  36. B.M. Bolotovskii, G.V. Voskresenskii “Emission from charged particles in periodic structures11 143–162 (1968)
    41.60.−m, 41.75.Fr, 42.79.Dj (all)
  37. G.N. Vyalov, M.M. Fiks “Multiple acceleration of particles in a potential electric field by means of charge exchange9 525–533 (1967)
    25.70.Kk, 29.20.Hm, 25.70.De, 21.10.−k (all)
  38. G.I. Budker “Accelerators with colliding particle beams9 534–542 (1967)
    29.20.Dh, 29.27.Bd, 41.75.Fr (all)
  39. V.S. Letokhov “The Kapitza–Dirac effect9 178–179 (1966)
    41.75.Fr, 41.85.Ct (all)
  40. V.P. Dzhelepov, V.P. Dmitrievskii et alStrong-current high-energy particle accelerators —meson factories8 253–268 (1965)
    29.20.Hm, 29.27.Ac, 29.27.Bd, 14.40.Aq (all)
  41. V.M. Lopukhin, A.S. Roshal’ “Electron-beam transverse-wave parametric amplifiers8 117–139 (1965)
    41.75.Fr, 84.30.Le (all)
  42. A.I. Alikhan’yan, S.A. Kheifets, S.K. Esin “Electron and positron storage rings6 614–638 (1964)
    29.20.Dh, 29.27.Bd, 29.27.Ac (all)
  43. Yu.Ya. Lembra “Methods for extracting a beam from a Synchrocyclotron6 143–156 (1963)
    29.20.−c, 29.27.Bd, 29.27.Ac (all)
  44. A.P. Grinberg “The microtron4 857–879 (1962)
    29.20.Hm, 29.27.Ac, 29.27.Fh, 41.85.Lc, 41.75.Fr (all)
  45. V.P. Ignatenko “Principles of formation and focusing of intense beams of charged particles4 96–115 (1961)
    41.85.Lc, 41.75.−i (all)
  46. 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)
  47. A.I. Akishin “Detection of ion beams by electron multipliers in mass spectrometry and nuclear physics1 113–123 (1958)
    29.40.−n, 41.75.Fr, 07.75.+h, 85.60.Ha, 25.40.−h, 27.20.+n (all)
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