PACS numbers

12.38.Mh Quark-gluon plasma 25.75.−q Relativistic heavy-ion collisions 52.27.Ny Relativistic plasmas 61.85.+p Channeling phenomena (blocking, energy loss, etc.)
  1. F.F. Komarov “Nano- and microstructuring of solids by swift heavy ions60 435–471 (2017)
    61.80.−x, 61.82.−d, 61.85.+p (all)
  2. A.O. Sidorin, G.V. Trubnikov, N.A. Shurkhno “Experimental and theoretical JINR studies on the development of stochastic cooling of charged particle beams59 264–278 (2016)
    25.75.−q, 29.20.db (all)
  3. 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)
  4. I.Ya. Aref’eva “Holographic approach to quark—gluon plasma in heavy ion collisions57 527–555 (2014)
    04.50.Gh, 11.25.Tq, 12.38.Mh, 24.85.+p (all)
  5. I.M. Dremin, A.V. Leonidov “The quark — gluon medium53 1123–1149 (2010)
    12.38.Mh, 24.85.+p, 41.60.Bq (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. A.V. Leonidov “Dense gluon matter in nuclear collisions48 323–343 (2005)
    12.38.−t, 12.38.Mh, 13.85.−t, 25.75.Nq (all)
  8. I.I. Roizen, E.L. Feinberg, O.D. Chernavskaya “Color deconfinement and subhadronic matter: phase states and the role of constituent quarks47 427–446 (2004)
    12.38.Mh, 12.39.Ba, 25.75.Nq (all)
  9. F.F. Komarov “Defect and track formation in solids irradiated by superhigh-energy ions46 1253–1282 (2003)
    61.80.−x, 61.82.−d, 61.85.+p (all)
  10. V.V. Okorokov “Employment of coherent excitation of relativistic nuclei in a crystal in basic research on SRT and GRT46 433–438 (2003)
    04.80.Cc, 23.20.−g, 61.85.+p (all)
  11. M.L. Ter-Mikhaelyan “Electromagnetic radiative processes in periodic media at high energies44 571–596 (2001)
    29.40.Wk, 41.60.−m, 61.80.Fe, 61.85.+p (all)
  12. I.L. Rozental’, Yu.A. Tarasov “Hydrodynamic theory of multiple process and the physics of the quark-gluon plasma36 (7) 572–586 (1993)
    12.38.Mh, 12.40.Ee (all)
  13. V.I. Vysotskii, R.N. Kuz’min “Channeling of neutral particles and photons in crystals35 (9) 725–746 (1992)
    61.85.+p, 75.30.Ds, 75.60.Ch, 76.80.+y (all)
  14. 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)
  15. 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)
  16. V.A. Bazylev, N.K. Zhevago “Channeling of fast particles and associated phenomena33 (12) 1021–1046 (1990)
    61.85.+p
  17. L.I. Ognev “Spectroscopy of the radiation emitted by channeled particles—a new method of study of crystals31 372–379 (1988)
    61.85.+p, 63.70.+h, 61.80.Fe (all)
  18. M.I. Ryazanov “Coherent radiation sources31 177–178 (1988)
    61.85.+p, 41.20.Jb, 61.80.Az (all)
  19. I.M. Dremin “Intermittence and fractal dimensionality in multiple particle creation processes30 649–653 (1987)
    12.38.Mh, 13.66.−a, 12.40.Ee (all)
  20. A.I. Akhiezer, N.F. Shul’ga “Influence of multiple scattering on the radiation of relativistic particles in amorphous and crystalline media30 197–219 (1987)
    68.49.Jk, 78.70.−g, 61.85.+p (all)
  21. 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)
  22. N.P. Klepikov “Radiation damping forces and radiation from charged particles28 506–520 (1985)
    61.85.+p, 41.60.Ap (all)
  23. A.A. Migdal “Lattice models in quantum chromodynamics and results of computer calculations.27 455–458 (1984)
    12.38.Bx, 12.38.Gc, 12.38.Mh, 12.10.Dm, 11.15.Ha, 11.55.−m (all)
  24. 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)
  25. 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)
  26. A.F. Tulinov “Influence of the crystal lattice on some atomic and nuclear processes8 864–872 (1966)
    61.85.+p, 24.50.+g, 25.40.−h (all)
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