PACS numbers

52.40.Hf Plasma-material interactions; boundary layer effects 61.43.−j Disordered solids 61.43.Hv Fractals; macroscopic aggregates (including diffusion-limited aggregates)
  1. N.P. Kobelev, V.A. Khonik “A novel view of the nature of formation of metallic glasses, their structural relaxation, and crystallizationPhys. Usp. 66 673–690 (2023)
    61.43.−j, 61.72.J−, 81.05.Kf (all)
  2. S.A. Barengolts, G.A. Mesyats “Explosive emission processes in thermonuclear facilities with magnetic plasma confinement and in linear electron—positron collidersPhys. Usp. 66 704–721 (2023)
    52.40.Hf, 52.80.Vp, 79.70.+q (all)
  3. B.A. Klumov “Universal structural properties of three-dimensional and two-dimensional meltsPhys. Usp. 66 288–311 (2023)
    61.20.Ja, 61.25.Mv, 61.43.−j (all)
  4. M.N. Sapozhnikov “Fifty years of selective laser spectroscopy of solids: a history, general principles and applicationsPhys. Usp. 61 (4) (2018)
    42.62.−b, 42.62.Fi, 61.43.−j, 61.72.−y, 63.20.kp, 78.20.−e, 78.40.Me, 78.55.−m, 78.66.−w, 87.15.−v, 87.15.M− (all)
  5. B.M. Smirnov “Metal nanostructures: from clusters to nanocatalysis and sensorsPhys. Usp. 60 1236–1267 (2017)
    61.43.Hv, 61.46.−w, 72.15.−v, 73.63.−b (all)
  6. G.V. Kozlov “Structure and properties of particulate-filled polymer nanocompositesPhys. Usp. 58 33–60 (2015)
    61.43.Hv, 61.46.Df, 62.20.de, 62.23.Pq (all)
  7. A.I. Gusev “Nonstoichiometry and superstructuresPhys. Usp. 57 839–876 (2014)
    61.43.−j, 61.50.Ah, 61.50.Ks, 61.66.Fn, 61.72.jd, 61.72.jj (all)
  8. A.V. Naumov “Low temperature spectroscopy of organic molecules in solid matrices: from the Shpolsky effect to the laser luminescent spectromicroscopy for all effectively emitting single moleculesPhys. Usp. 56 605–622 (2013)
    42.30.−d, 42.62.−b, 61.43.−j, 61.72.−y, 78.20.−e, 78.47.−p, 78.55.−m (all)
  9. V.V. Brazhkin ““Lost in Translation”: what do the negative values of effective Grüneisen coefficients mean in shock wave experiments? [Extended comment on “Shock compression of porous metals and silicates” by A B Medvedev and R F Trunin, Phys. Usp. 55 773 (2012)]Phys. Usp. 55 790–795 (2012)
    61.43.−j, 62.50.−p, 64.60.My, 65.60.+a, 91.35.−x, 91.40.Qa (all)
  10. A.M. Glezer “Creation principles of new-generation multifunctional structural materialsPhys. Usp. 55 522–529 (2012)
    61.43.−j, 61.46.+w, 62.50.−p (all)
  11. 50 years of the Condensed Matter Physics Research Council of the Russian Academy of Sciences (Scientific session of the Physical Sciences Division of the Russian Academy of Sciences, 9 November 2011)Phys. Usp. 55 522–529 (2012)
    01.10.Fv, 61.43.−j, 61.46.+w, 62.50.−p (all)
  12. B.M. Smirnov “Processes involving clusters and small particles in a buffer gasPhys. Usp. 54 691–721 (2011)
    36.40.−c, 36.40.Sx, 61.43.Hv, 64.70.D−, 68.37.Hk (all)
  13. V.A. Gritsenko “Structure of silicon/oxide and nitride/oxide interfacesPhys. Usp. 52 869–877 (2009)
    61.43.−j, 61.66.Fn, 68.35.Dv, 71.55.Jv (all)
  14. V.I. Balykin, A.N. Ryabtsev et alOn the 40th anniversary of the Institute of Spectroscopy of the Russian Academy of Sciences (Scientific session of the Physical Sciences Division of the Russian Academy of Sciences, 8 October 2008)Phys. Usp. 52 275–309 (2009)
    03.75.−b, 03.75.Hh, 05.30.Jp, 07.07.−a, 32.30.−r, 32.30.Jc, 33.20.−t, 36.40.−c, 37.20.+j, 42.82.Cr, 61.43.−j, 63.20.−e, 63.50.−x, 67.25.dw, 71.35.Lk, 71.36.+c, 78.30.−j, 78.47.−p, 78.55.−m, 81.07.−b, 87.85.fk, 87.64.−t, 95.30.Ky, 97.10.−q (all)
  15. A.V. Naumov, Yu.G. Vainer “Single molecules as spectral nanoprobes for the diagnostics of dynamic processes in solid mediaPhys. Usp. 52 298–304 (2009)
    61.43.−j, 78.47.−p, 78.55.−m (all)
  16. L.V. Spivak “Synergy effects in the deformation response of thermodynamically open metal — hydrogen systemsPhys. Usp. 51 863–885 (2008)
    61.43.−j, 61.72.−y, 62.20.−x, 81.05.Bx (all)
  17. V.A. Gritsenko “Atomic structure of the amorphous nonstoichiometric silicon oxides and nitridesPhys. Usp. 51 699–708 (2008)
    33.60.Fy, 61.43.−j, 61.66.Fn, 68.35.Dv, 71.55.Jv (all)
  18. V.P. Krainov, B.M. Smirnov, M.B. Smirnov “Femtosecond excitation of cluster beamsPhys. Usp. 50 907–931 (2007)
    36.40.−c, 52.40.Hf, 52.40.Mj, 61.46.−w (all)
  19. Yu.G. Vainer “Single-molecule spectroscopy and disordered solid dynamicsPhys. Usp. 47 623–626 (2004)
    33.20.−t, 61.43.−j, 63.50.+x (all)
  20. A.V. Belushkin “Novel approaches to the analysis of crystal structure. A nonstandard method for the study of atomic and molecular diffusion mechanismsPhys. Usp. 46 1219–1223 (2003)
    61.12.−q, 61.43.−j, 66.30.−h (all)
  21. R. Folk, Yu. Holovatch, T. Yavorskii “Critical exponents of a three-dimensional weakly diluted quenched Ising modelPhys. Usp. 46 169–191 (2003)
    11.10.Gh, 61.43.−j, 64.60.Ak (all)
  22. G.V. Kozlov, V.U. Novikov “A cluster model for the polymer amorphous statePhys. Usp. 44 681–724 (2001)
    61.41.+e, 61.43.−j, 61.43.Bn, 61.43.Hv, 61.46.+w (all)
  23. V.V. Brazhkin, A.G. Lyapin “Universal viscosity growth in metallic melts at megabar pressures: the vitreous state of the Earth’s inner corePhys. Usp. 43 493–508 (2000)
    61.25.Mv, 61.43.−j, 62.50.+p, 66.20.+d, 91.35.Ed (all)
  24. D.K. Belashchenko “Diffusion mechanisms in disordered systems: computer simulationPhys. Usp. 42 297–319 (1999)
    61.43.−j, 61.43.Er, 66.30.−h (all)
  25. V.N. Tsytovich, J. Winter “On the role of dust in fusion devicesPhys. Usp. 41 815–822 (1998)
    28.52.−s, 52.40.Hf, 52.55.−s, 81.90.+s (all)
  26. M.P. Lorikyan “Detectors of nuclear radiation and multiply charged particles with porous dielectric working mediaPhys. Usp. 38 1271–1281 (1995)
    29.40.Wk, 79.20.Hx, 61.43.−j (all)
  27. V.V. Zosimov, L.M. Lyamshev “Fractals in wave processesPhys. Usp. 38 347–384 (1995)
    47.35.+i, 47.52.+j, 47.53.+n, 61.43.Hv (all)
  28. E.F. Mikhailov, S.S. Vlasenko “The generation of fractal structures in gaseous phasePhys. Usp. 38 253–271 (1995)
    36.40.−c, 47.53.+n, 61.43.Hv (all)
  29. E.P. Emets, A.E. Novoselova, P.P. Poluektov “In situ determination of the fractal dimensions of aerosol particlesPhys. Usp. 37 881–887 (1994)
    61.43.Hv, 47.53.+n, 82.70.Rr, 92.60.Mt (all)
  30. A.I. Olemskoi, A.Ya. Flat “Application of fractals in condensed-matter physicsPhys. Usp. 36 (12) 1087–1128 (1993)
    64.60.Ak, 47.53.+n, 61.43.Hv, 61.44.−n (all)
  31. V.S. Vorob’ev “Plasma arising during the interaction of laser radiation with solidsPhys. Usp. 36 (12) 1129–1157 (1993)
    52.40.Hf, 52.38.−r, 52.25.Fi, 42.60.Jf, 52.25.Jm (all)
  32. V.M. Gordienko, N.I. Koroteev, V.T. Platonenko “Generation of superstrong optical fields on the basis on high-power femtosecond laser systems with excimer amplification and experiments on the generation of ultrashort x-ray pulsesPhys. Usp. 36 (12) 1158–1160 (1993)
    52.38.Ph, 52.25.Kn, 52.40.Hf, 52.25.Fi, 42.60.Jf (all)
  33. B.M. Smirnov “Radiative processes involving fractal structuresPhys. Usp. 36 (7) 592–603 (1993)
    61.43.Hv, 52.80.−s (all)
  34. L.L. Buishvili, V.S. Vladimirov et alDmitrii Nikolaevich Zubarev (Obituary)Phys. Usp. 36 (3) 195–196 (1993)
    01.60.+q, 05.70.Ln, 52.40.Hf, 52.35.Ra, 05.60.−k (all)
  35. B.M. Smirnov “Energetic processes in macroscopic fractal structuresSov. Phys. Usp. 34 (6) 526–541 (1991)
    61.43.Hv, 68.35.Md, 82.70.Gg (all)
  36. A.A. Lushnikov, A.E. Negin et alAerogel structures in a gasSov. Phys. Usp. 34 (2) 160–166 (1991)
    61.43.Gt, 61.43.Hv, 61.80.Ba (all)
  37. B.M. Smirnov “Phenomena of growth of fractal systemsSov. Phys. Usp. 32 941–942 (1989)
    01.30.Vv, 61.43.Hv, 47.53.+n (all)
  38. B.M. Smirnov “Similarity laws in disordered condensed systemsSov. Phys. Usp. 32 736–736 (1989)
    64.60.Ak, 61.43.−j (all)
  39. B.M. Smirnov “Properties of a fractal aggregateSov. Phys. Usp. 32 181–182 (1989)
    61.43.Hv, 61.43.Bn, 68.43.Jk (all)
  40. A.V. Nedospasov “Physics of near-wall plasma in tokamaksSov. Phys. Usp. 30 620–627 (1987)
    52.40.Hf, 52.55.Fa, 52.55.Rk, 52.25.Fi, 52.35.Ra, 52.80.Mg (all)
  41. B.M. Smirnov “Fractal clustersSov. Phys. Usp. 29 481–505 (1986)
    61.43.Hv, 68.43.Jk, 82.70.Rr, 66.30.Dn (all)
  42. A.A. Galeev, R.Z. Sagdeev “Paradoxes of Classical Diffusion of Plasma in Toroidal Magnetic TrapsSov. Phys. Usp. 12 810–811 (1970)
    52.55.Hc, 52.55.Fa, 52.40.Hf, 52.25.Dg (all)
  43. V.P. Budaev “Stochastic clustering of materials by plasma — surface interactionPhys. Usp., accepted
    52.40.Hf, 61.43.Hv, 61.43.−j (all)
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