PACS numbers

12.38.Mh Quark-gluon plasma 12.40.Ee Statistical models
  1. 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)
  2. I.M. Dremin, A.V. Leonidov “The quark — gluon medium53 1123–1149 (2010)
    12.38.Mh, 24.85.+p, 41.60.Bq (all)
  3. 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)
  4. 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)
  5. 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)
  6. A.N. Sissakian “Thermalization phenomenon in hadron physics46 320–324 (2003)
    12.38.−t, 12.40.Ee, 13.85.Hd (all)
  7. 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)
  8. 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)
  9. 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)
  10. E.L. Feinberg “Thermodynamic fireballs (state of the concept in the theory and in accelerator experiments)26 1–30 (1983)
    13.85.Hd, 12.40.Ee, 12.40.Ss (all)
  11. I.M. Dremin, C. Quigg “Clusters in hadron multiple production processes21 265–271 (1978)
    12.40.Ee
  12. I.V. Andreev, I.M. Dremin “Mechanisms of multi-particle production processes20 381–405 (1977)
    12.40.Bb, 12.40.Ee, 12.40.Mm, 12.40.Ss
  13. E.L. Feinberg “Multiple generation of hadrons and statistical theory14 455–483 (1972)
    12.40.Ee, 12.40.Nn, 13.75.Gx, 13.75.Cs, 14.40.Aq (all)
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