PACS numbers

73.43.−f Quantum Hall effects
  1. S.I. Vedeneev “Quantum oscillations in three-dimensional topological insulatorsPhys. Usp. 60 385–401 (2017)
    71.18.+y, 73.20.−r, 73.25.+i, 73.43.−f (all)
  2. V.T. Dolgopolov “Integer quantum Hall effect and related phenomenaPhys. Usp. 57 105–127 (2014)
    71.30.+h, 73.40.Qv, 73.43.−f (all)
  3. Yu.E. Lozovik, S.P. Merkulova et alCollective electron phenomena and electron transport in graphene (Scientific session of the Physical Sciences Division of the Russian Academy of Sciences, 27 February 2008)Phys. Usp. 51 727–748 (2008)
    01.10.Fv, 71.35.Ji, 73.20.Mf, 73.21.−b, 72.80.Rj, 73.43.−f, 81.05.Uw (all)
  4. S.V. Morozov, K.S. Novoselov, A.K. Geim “Electronic transport in graphenePhys. Usp. 51 744–748 (2008)
    72.80.Rj, 73.43.−f, 81.05.Uw (all)
  5. E.V. Devyatov “Edge states in the regimes of integer and fractional quantum Hall effectsPhys. Usp. 50 197–218 (2007)
    73.43.−f, 73.43.Fj (all)
  6. A.A. Shashkin “Metal-insulator transitions and the effects of electron-electron interactions in two-dimensional electron systemsPhys. Usp. 48 129–149 (2005)
    71.30.+h, 73.40.Qv, 73.43.−f (all)
  7. V.B. Timofeev “Electron correlation phenomena in semiconductor low-dimension structures and nanostructuresPhys. Usp. 47 1037–1044 (2004)
    71.35.−y, 71.36.+c, 73.43.−f, 73.63.−b (all)
  8. I.V. Kukushkin, J.H. Smet et alMagnetooptics of composite fermionsPhys. Usp. 44 36–39 (2001)
    73.43.−f, 73.43.Cd, 71.70.−d (all)
  9. M.O. Dorokhova, S.I. Dorozhkin “Magnetocapacitance studies of two-dimensional electron systems with long-range potential fluctuationsPhys. Usp. 44 39–44 (2001)
    73.43.−f, 73.43.Cd, 71.70.−d (all)
  10. M.A. Baranov, A.M.M. Pruisken, B. Škorić “The problem of Coulomb interactions in the theory of the quantum Hall effectPhys. Usp. 44 44–49 (2001)
    73.43.−f, 73.43.Cd, 71.70.−d (all)
  11. V.I. Fal’ko, S.V. Iordanskii, A.B. Kashuba “Hidden $\mathrm{SU(4)}$ symmetry in bilayer quantum well at integer filling factorsPhys. Usp. 44 49–53 (2001)
    73.43.−f, 73.43.Cd, 71.70.−d (all)
  12. I.V. Kukushkin, V.B. Timofeev “Magneto-optics of two-dimensional electron systems in the ultraquantum limit: incompressible quantum liquids and the Wigner crystalPhys. Usp. 36 (7) 549–571 (1993)
    78.20.Ls, 73.43.−f, 78.60.−b (all)
  13. A.A. Vedenov, E.P. Velikhov et alFeliks Romanovich Ulinich (Obituary)Sov. Phys. Usp. 34 (3) 276–277 (1991)
    01.60.+q, 52.30.Cv, 52.25.Kn, 52.55.−s, 73.43.−f, 03.75.−b (all)
  14. V.B. Shikin “The fractional quantum Hall effectSov. Phys. Usp. 32 831–832 (1989)
    73.43.−f
  15. G.L. Belen’kii “Electron-hole liquid and two-dimensional electron gas in layered group A3B6 semiconductorsSov. Phys. Usp. 31 955–956 (1988)
    71.10.Ca, 71.35.Ee, 71.55.Ht, 73.43.−f, 76.40.+b, 78.55.Hx (all)
  16. I.V. Kukushkin, V.B. Timofeev “Magnetooptics of two-dimensional electrons in the integral and fractional quantum Hall effect regimesSov. Phys. Usp. 31 879–879 (1988)
    78.20.Jq, 73.43.−f (all)
  17. A.P. Silin “High magnetic fields in semiconductor physicsSov. Phys. Usp. 31 784–784 (1988)
    01.30.Vv, 72.20.Ht, 73.43.−f, 73.40.Kp, 73.63.Hs, 72.20.My (all)
  18. O.A. Pankratov “Two-dimensional systems: physics and new devicesSov. Phys. Usp. 30 754–755 (1987)
    01.30.Vv, 81.15.−z, 71.55.−i, 73.43.−f (all)
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