PACS numbers

52.80.Pi High-frequency and RF discharges
  1. V.G. Dudnikov “Surface-plasma method for the production of negative ion beams62 1233–1267 (2019)
    01.65.+g, 29.25.Ni, 52.80.Pi (all)
  2. E.A. Kral’kina “Low-pressure radio-frequency inductive discharge and possibilities of optimizing inductive plasma sources51 493–512 (2008)
    52.40.Fd, 52.50.−b, 52.80.Pi (all)
  3. G.A. Mesyats “Similarity laws for pulsed gas discharges49 1045–1065 (2006)
    52.80.−s, 52.80.Dy, 52.80.Pi (all)
  4. G.A. Askar’yan, G.M. Batanov et alAftereffects of microwave discharges in the stratosphere31 957–959 (1988)
    84.40.Ua, 52.80.Pi, 92.60.Xg (all)
  5. S.A. Kazantsev, N.Ya. Polinovskaya et alPolarization of atomic ensembles in ionized gases31 785–809 (1988)
    52.80.Hc, 52.80.Pi (all)
  6. V.N. Ochkin, N.G. Preobrazhenskii et alOptogalvanic effect in plasmas and gases29 260–280 (1986)
    52.70.Kz, 52.80.Hc, 33.20.Vq, 52.80.Pi, 32.80.Rm (all)
  7. N.E. Alekseevskii, A.F. Andreev et alPetr Leonidovich Kapitsa (Obituary)28 108–110 (1985)
    01.60.+q, 52.80.Pi (all)
  8. G.A. Askar’yan, V.A. Kholodilov “Interaction of a microwave beam with a liquid: energy conversion, possible applications27 885–886 (1984)
    84.40.−x, 52.80.Pi (all)
  9. Yu.P. Raizer “Propagation of discharges and maintenance of a Dense plasma by electromagnetic fields15 688–707 (1973)
    52.35.Tc, 52.25.Fi, 52.25.Os, 52.80.Pi, 82.33.Vx (all)
  10. Yu.P. Raizer “High-frequency high-pressure induction discharge and the electrodeless plasmotron12 777–791 (1970)
    52.80.Pi, 52.75.−d, 52.25.−b (all)
  11. K.F. Kudu “A high-frequency demonstration indicator of radiation7 331–331 (1964)
    52.80.Pi, 84.30.Ng, 01.50.My (all)
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