PACS numbers

73.20.−r Electron states at surfaces and interfaces 73.40.Lq Other semiconductor-to-semiconductor contacts, p-n junctions, and heterojunctions 73.43.Cd Theory and modeling
  1. S.E. Kuratov, D.S. Shidlovski et alTwo scales of quantum effects in a mesoscopic system of degenerate electrons64 836–851 (2021)
    31.15.E−, 71.10.Ca, 71.15.Mb, 73.20.−r (all)
  2. A.B. Borisov “Localized structures in magnetic systems without the center of inversion63 269–288 (2020)
    02.70.Uu, 73.20.−r, 73.43.Cf, 75.10.Hk, 75.70.Ak (all)
  3. V.T. Dolgopolov “Two-dimensional system of strongly interacting electrons in silicon (100) structures62 633–648 (2019)
    71.27.+a, 71.30.+h, 73.20.−r (all)
  4. O.A. Pankratov “Understanding surface states of topological insulators61 1116–1126 (2018)
    73.20.−r, 73.40.Lq, 73.43.Cd (all)
  5. S.A. Tarasenko “Electron properties of topological insulators. The structure of edge states and photogalvanic effects61 1026–1030 (2018)
    72.25.Dc, 73.20.−r, 73.40.−c, 73.50.Pz (all)
  6. S.I. Vedeneev “Quantum oscillations in three-dimensional topological insulators60 385–401 (2017)
    71.18.+y, 73.20.−r, 73.25.+i, 73.43.−f (all)
  7. A.N. Aleshin “Organic optoelectronics based on polymer—inorganic nanoparticle composite materials56 627–632 (2013)
    72.80.Le, 72.80.Tm, 73.40.Lq, 73.61.Le, 73.61.Ph (all)
  8. A.V. Dorofeenko, A.A. Zyablovsky et alLight propagation in composite materials with gain layers55 1080–1097 (2012)
    41.20.Jb, 42.70.Qs, 73.20.−r (all)
  9. Modern problems in physical sciences (Scientific session of the Physical Sciences Division of the Russian Academy of Sciences, 26 October 2011)55 408–425 (2012)
    01.10.Fv, 42.25.−p, 42.30.−d, 42.60.Jf, 72.80.Vp, 73.20.−r, 75.30.−m, 75.50.−y, 81.05.Bx, 81.05.ue (all)
  10. S.V. Morozov “New effects in graphene with high carrier mobility55 408–412 (2012)
    72.80.Vp, 73.20.−r, 81.05.ue (all)
  11. M.V. Kuznetsov, A.S. Razinkin, A.L. Ivanovskii “Oxide nanostructures on a Nb surface and related systems: experiments and ab initio calculations53 995–1014 (2010)
    68.03.Hj, 68.35.B−, 68.35.Fx, 68.37.−d, 73.20.−r, 79.60.−i (all)
  12. A.P. Vinogradov, A.V. Dorofeenko et alSurface states in photonic crystals53 243–256 (2010)
    41.20.Jb, 42.70.Qs, 73.20.−r (all)
  13. S.M. Stishov, L.G. Khvostantsev et alOn the 50th anniversary of the L F Vereshchagin Institute for High Pressure Physics, RAS (Scientific outreach session of the Physical Sciences Division of the Russian Academy of Sciences, 23 April 2008)51 1055–1083 (2008)
    01.65.+g, 07.35.+k, 61.50.Ks, 62.50.−p, 64.70.kd, 71.15.−m, 71.18.+y, 73.20.−r, 74.20.−z, 74.70.−b, 75.10.−b (all)
  14. A.I. Zhakin “Near-electrode and transient processes in liquid dielectrics49 275–295 (2006)
    73.20.−r, 73.40.−c, 82.45.−h (all)
  15. S.V. Iordanskii, A. Kashuba “Two-dimensional multicomponent electron gas as a model for silicon heterostructures49 208–211 (2006)
    01.10.Fv, 71.10.Ca, 71.27+a, 73.43.Cd (all)
  16. L.I. Magarill, A.V. Chaplik, M.V. Entin “Spectrum and kinetics of electrons in curved nanostructures48 953–958 (2005)
    73.20.−r, 73.25.+i, 73.50.−h, 73.61.−r (all)
  17. Yu.V. Gulyaev, V.N. Lutskii “Physics of Low-Dimensional Systems46 1315–1315 (2003)
    73.20.−r, 73.50.−h (all)
  18. B.A. Volkov “Electronic properties of narrow gap IV-VI semiconductors46 984–986 (2003)
    71.20.Nr, 73.20.−r (all)
  19. I.V. Kukushkin, J.H. Smet et alMagnetooptics of composite fermions44 36–39 (2001)
    73.43.−f, 73.43.Cd, 71.70.−d (all)
  20. M.O. Dorokhova, S.I. Dorozhkin “Magnetocapacitance studies of two-dimensional electron systems with long-range potential fluctuations44 39–44 (2001)
    73.43.−f, 73.43.Cd, 71.70.−d (all)
  21. M.A. Baranov, A.M.M. Pruisken, B. Škorić “The problem of Coulomb interactions in the theory of the quantum Hall effect44 44–49 (2001)
    73.43.−f, 73.43.Cd, 71.70.−d (all)
  22. V.I. Fal’ko, S.V. Iordanskii, A.B. Kashuba “Hidden $\mathrm{SU(4)}$ symmetry in bilayer quantum well at integer filling factors44 49–53 (2001)
    73.43.−f, 73.43.Cd, 71.70.−d (all)
  23. A.Ya. Gokhshtein “Electrolysis and surface phenomena. To the bicentenary of Volta’s publication on the first direct-current source43 725–750 (2000)
    01.65.+g, 61.20.Qg, 73.20.−r (all)
  24. G.V. Dedkov “Nanotribology: experimental facts and theoretical models43 541–572 (2000)
    61.16.Ch, 62.20.Qp, 68.35.Gy, 73.20.−r, 81.40.Pq (all)
  25. L.I. Magarill, D.A. Romanov, A.V. Chaplik “Low-dimensional electrons in curvilinear nanostructures43 283–285 (2000)
    73.20.−r, 73.25.+i, 73.50.−h, 73.61.−r (all)
  26. V.F. Elesin, I.Yu. Kateev et alTheory of coherent oscillations in a resonant tunneling diode43 291–293 (2000)
    73.20.−r, 73.23.−b, 73.40.Gk (all)
  27. B.A. Volkov, B.G. Idlis, M.Sh. Usmanov “Interface states in inhomogeneous semiconductor structures38 761–771 (1995)
    73.20.Dx, 73.40.Lq, 71.28.+d (all)
  28. I.V. Kukushkin, V.B. Timofeev “Magnetooptics of two-dimensional electrons in the ultraquantum limit34 (3) 269–272 (1991)
    01.30.Cc, 78.20.Ls, 73.43.Cd, 78.67.−n (all)
  29. V.M. Pudalov, S.G. Semenchinskii, V.S. Edel’man “Charge and potential of an inversion layer in a metalinsulator-semiconductor structure in a quantizing magnetic field28 635–636 (1985)
    73.20.−r
  30. A.M. Brodskii, M.I. Urbakh “The effect of the microscopic structure of metal surfaces on their optical properties25 810–832 (1982)
    78.20.Dj, 68.45.Da, 73.20.−r, 68.20.+t
  31. A.N. Georgobiani “Wide-band II-VI semiconductors and the prospects of their application17 424–437 (1974)
    73.40.Lq, 78.60.Fi, 85.30.−z, 61.72.Ji (all)
  32. K.A. Valiev “Present-day Semiconductor Microelectronics and the Prospects of its Development16 281–283 (1973)
    85.40.−e, 85.30.−z, 73.40.Kp, 73.40.Lq (all)
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