PACS numbers

68.35.Fx Diffusion; interface formation
  1. V.N. Polkovnikov, N.N. Salashchenko et alBeryllium-based multilayer X-ray opticsPhys. Usp. 63 83–95 (2020)
    07.60.−j, 07.85.Fv, 42.79.−e, 68.35.Ct, 68.35.Fx, 68.47.De, 68.55.A, 68.65.Ac, 81.15.−z (all)
  2. E.N. Zubarev “Reactive diffusion in multilayer metal/silicon nanostructuresPhys. Usp. 54 473–498 (2011)
    66.30.−h, 68.35.Fx, 68.65.−k (all)
  3. M.V. Kuznetsov, A.S. Razinkin, A.L. Ivanovskii “Oxide nanostructures on a Nb surface and related systems: experiments and ab initio calculationsPhys. Usp. 53 995–1014 (2010)
    68.03.Hj, 68.35.B−, 68.35.Fx, 68.37.−d, 73.20.−r, 79.60.−i (all)
  4. A.P. Silin “Structure and dynamics of surfaces: phenomena, models, and methodsSov. Phys. Usp. 31 885–886 (1988)
    01.30.Vv, 68.35.Ja, 68.35.Bs, 68.35.Fx, 68.35.Rh, 68.43.−h (all)
  5. A.A. Chernov “Elementary processes of crystal growth from solutionsSov. Phys. Usp. 30 1098–1100 (1987)
    81.10.Dn, 61.72.Ff, 77.84.Fa, 68.35.Fx (all)
  6. V.P. Zhdanov, K.I. Zamaraev “Lattice-gas model of chemisorption on metal surfacesSov. Phys. Usp. 29 755–776 (1986)
    68.43.Mn, 68.47.De, 68.35.Bs, 68.35.Fx (all)
  7. Ya.E. Geguzin, N.N. Ovcharenko “Surface energy and surface processes in solidsSov. Phys. Usp. 5 129–157 (1962)
    68.35.Md, 68.35.Ct, 68.35.Fx, 66.30.Hs, 68.15.+e, 68.08.−p (all)
  8. N.S. Gorbunov, V.I. Izvekov “The investigation of diffusion in metal oxides by means of radioactive tracersSov. Phys. Usp. 3 778–797 (1961)
    66.30.Dn, 66.30.Fq, 68.35.Fx, 68.47.De, 07.89.+b (all)
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