PACS numbers

05.45.Yv Solitons 52.35.Sb Solitons; BGK modes
  1. S.K. Turitsyn, N.N. Rozanov et alDissipative solitons in fiber lasers59 642–668 (2016)
    05.45.Yv, 42.55.Ah, 42.55.−f, 42.55.Wd, 42.60.Fc, 42.65.Tg, 42.81.Dp (all)
  2. S.V. Dmitriev, E.A. Korznikova et alDiscrete breathers in crystals59 446–461 (2016)
    05.45.−a, 05.45.Yv, 63.20.−e (all)
  3. V.E. Zakharov, E.A. Kuznetsov “Solitons and collapses: two evolution scenarios of nonlinear wave systems55 535–556 (2012)
    42.65.Jx, 42.65.Tg, 47.35.Fg, 47.35.Jk, 52.35.Sb (all)
  4. P.K. Shukla, B. Eliasson “Nonlinear aspects of quantum plasma physics53 51–76 (2010)
    05.30.Fk, 52.35.Mw, 52.35.Ra, 52.35.Sb (all)
  5. A.I. Musienko, L.I. Manevich “Classical mechanical analogs of relativistic effects47 797–820 (2004)
    03.30.+p, 05.45.Yv, 11.15.−q, 61.72.Lk (all)
  6. T.I. Belova, A.E. Kudryavtsev “Solitons and their interactions in classical field theory40 359–386 (1997)
    03.50.−z, 03.50.Kk, 52.35.Py, 52.35.Sb (all)
  7. M.M. Tsypin “Classical mechanics of one-dimensional nonlinear systems32 944–944 (1989)
    05.45.Yv
  8. B.S. Kerner, V.V. Osipov “Autosolitons32 101–138 (1989)
    05.45.Yv, 52.35.Sb (all)
  9. V.E. Zakharov “Wave collapse31 672–674 (1988)
    52.35.Sb, 52.35.Mw, 52.35.Ra, 52.35.Tc, 52.35.Fp, 52.25.Kn (all)
  10. M.V. Nezlin “Rossby solitons (Experimental investigations and laboratory model of natural vortices of the Jovian Great Red Spot type)29 807–842 (1986)
    52.35.Sb, 52.35.We, 52.35.Kt (all)
  11. B.B. Kadomtsev, V.I. Karpman “NONLINEAR WAVES14 40–60 (1971)
    52.35.Mw, 52.35.Sb, 52.35.Tc, 52.35.Ra (all)
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