PACS numbers

52.27.Ny Relativistic plasmas
  1. 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 targetPhys. Usp. 57 702–707 (2014)
    32.80.−t, 52.27.Ny, 52.38.Ph, 52.70.La (all)
  2. S. Peigné, A.V. Smilga “Energy losses in relativistic plasmas: QCD versus QEDPhys. Usp. 52 659–685 (2009)
    12.38.Mh, 25.75.−q, 52.27.Ny, 61.85.+p (all)
  3. B.A. Trubnikov “Constrictions in a relativistic pinch with a longitudinal magnetic fieldSov. Phys. Usp. 34 (11) 1018–1020 (1991)
    52.27.Ny, 52.58.Lq, 52.65.Kj, 52.80.−s (all)
  4. G.D. Fleishman “Transition radiation of a relativistic particle moving along a curveSov. Phys. Usp. 34 (1) 86–96 (1991)
    41.60.−m, 52.27.Ny, 52.25.Mq (all)
  5. M.V. Kuzelev, A.A. Rukhadze et alRelativistic plasma UHF electronicsSov. Phys. Usp. 28 724–726 (1985)
    52.27.Ny, 52.75.−d, 52.35.Hr, 52.25.−b, 84.40.−x (all)
  6. M.S. Rabinovich, V.N. Tsytovich “New Collective Methods of Charged-Particle AccelerationSov. Phys. Usp. 17 459–460 (1974)
    41.75.Ht, 29.17.+w, 52.27.Ny, 52.35.Qz (all)
  7. S.T. Belyaev, V.A. Sidorov, B.V. Chirikov “Gersh Itskovich Budker (in honor of his 50th birthday)Sov. Phys. Usp. 11 916–918 (1969)
    01.60.+q, 29.20.−c, 52.27.Ny (all)
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