PACS numbers

64.70.D− Solid-liquid transitions
  1. D.K. Belashchenko “Does the embedded atom model have predictive power?63 1161–1187 (2020)
    02.70.−c, 64.30.−t, 64.70.D− (all)
  2. A.I. Savvatimskii, S.V. Onufriev “Investigation of the physical properties of carbon under high temperatures (experimental studies)63 1015–1036 (2020)
    05.70.−a, 64.70.D−, 65.40.Ba (all)
  3. V.N. Ryzhov, E.E. Tareyeva et alComplex phase diagrams of systems with isotropic potentials: results of computer simulations63 417–439 (2020)
    02.70.Ns, 64.10.+h, 64.70.D− (all)
  4. S.M. Stishov “Quantum effects in a system of Boltzmann hard spheres62 617–622 (2019)
    64.70.D−, 67.10.Fj (all)
  5. S.A. Aseyev, E.A. Ryabov “Investigation of structural dynamics of substances using ultrafast electron diffraction and microscopy62 289–293 (2019)
    07.78.+s, 61.05.J−, 64.70.D−, 64.70.K−, 68.37.Og (all)
  6. V.N. Ryzhov, E.E. Tareyeva et alBerezinskii—Kosterlitz—Thouless transition and two-dimensional melting60 857–885 (2017)
    02.70.Ns, 05.70.Ln, 64.10.+h, 64.60.Ej, 64.70.D− (all)
  7. A.A. Ishchenko, S.A. Aseev et alUltrafast electron diffraction and electron microscopy: present status and future prospects57 633–669 (2014)
    07.78.+s, 61.05.J−, 64.70.D−, 64.70.K−, 68.37.Og (all)
  8. R.S. Berry, B.M. Smirnov “Modeling of configurational transitions in atomic systems56 973–998 (2013)
    36.40.−c, 36.40.Ei, 64.70.D−, 71.15.Mb, 81.16.Hc, 82.30.−b (all)
  9. B.M. Smirnov “Processes involving clusters and small particles in a buffer gas54 691–721 (2011)
    36.40.−c, 36.40.Sx, 61.43.Hv, 64.70.D−, 68.37.Hk (all)
  10. B.A. Klumov “On melting criteria for complex plasma53 1053–1065 (2010)
    52.27.Lw, 52.65.Yy, 61.72.J−, 64.70.D− (all)
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