PACS numbers

71.15.Ap Basis sets (LCAO, plane-wave, APW, etc.) and related methodology (scattering methods, ASA, linearized methods, etc.) 71.35.Lk Collective effects (Bose effects, phase space filling, and excitonic phase transitions) 71.70.Di Landau levels 73.40.Qv Metal-insulator-semiconductor structures (including semiconductor-to-insulator) 73.50.Jt Galvanomagnetic and other magnetotransport effects (including thermomagnetic effects)
  1. M.M. Glazov, R.A. Suris “Collective states of excitons in semiconductors63 (11) (2020)
    03.75.Hh, 03.75.Kk, 71.35.−y, 71.35.Lk, 71.36.+c, 72.15.Rn (all)
  2. L.V. Kulik, A.V. Gorbunov et alSpin excitations in two-dimensional electron gas, their relaxation, photoexcitation and detection methods, and the role of Coulomb correlations62 865–891 (2019)
    71.35.Lk, 73.21.Fg, 78.67.De (all)
  3. V.T. Dolgopolov “Manifestation of interactions in the transport properties of low-dimensional electronic systems57 (7) (2014)
    71.30.+h, 73.40.Qv (all)
  4. V.T. Dolgopolov “Integer quantum Hall effect and related phenomena57 105–127 (2014)
    71.30.+h, 73.40.Qv, 73.43.−f (all)
  5. V.L. Pokrovsky “Landau and modern physics52 1169–1176 (2009)
    01.65.+g, 31.50.Gh, 64.60.−i, 71.70.Di (all)
  6. 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)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,, 87.64.−t, 95.30.Ky, 97.10.−q (all)
  7. Yu.E. Lozovik “Strong correlations and new phases in a system of excitons and polaritons. A polariton laser52 286–290 (2009)
    03.75.Hh, 71.35.Lk, 71.36.+c (all)
  8. V.B. Timofeev “Collective exciton effects in spatially separated electron-hole layers in semiconductors48 295–306 (2005)
    03.75.Nt, 71.35.Lk, 73.20.Mf (all)
  9. A.A. Shashkin “Metal-insulator transitions and the effects of electron-electron interactions in two-dimensional electron systems48 129–149 (2005)
    71.30.+h, 73.40.Qv, 73.43.−f (all)
  10. E.E. Vdovin, Yu.N. Khanin et alScientific session of the Division of General Physics and Astronomy of the Russian Academy of Sciences (30 May 2001)44 1299–1301 (2001)
    71.24.+q, 73.40.Gk, 73.61.Ey, 73.61.Tm, 71.45.Gm, 71.55.Eq, 73.20.Mf, 73.61.−r, 85.30.Vw, 85.30.Tv, 03.75.Fi, 71.35.Lk, 71.35.Ji, 29.25.Bx, 29.27.Hj, 79.60.Jv (all)
  11. Yu.E. Lozovik “Exciton Bose condensate control and the phonon laser44 1307–1309 (2001)
    03.75.Fi, 71.35.Lk, 71.35.Ji (all)
  12. S.S. Murzin “Electron transport in the extreme quantum limit in applied magnetic field43 349–364 (2000)
    71.55.+i, 71.70.Di, 72.10.Bg, 72.20.−i (all)
  13. V.M. Pudalov “Wigner Crystallization in a two-dimensional electron gas in semiconductors34 (6) 542–544 (1991)
    73.20.At, 73.40.Qv (all)
  14. I.I. Mazin “A school on the electronic structure of solids31 783–784 (1988)
    01.30.Vv, 71.20.−b, 71.15.Ap (all)
  15. I.V. Kukushkin, S.V. Meshkov, V.B. Timofeev “Two-dimensional electron density of states in a transverse magnetic field31 511–534 (1988)
    73.20.At, 73.40.Qv, 73.40.Kp, 71.70.Di, 73.40.Cg, 72.20.Jv (all)
  16. I.V. Kukushkin, V.B. Timofeev “Density of states of two-dimensional electrons in a quantizing transverse magnetic field30 746–747 (1987)
    71.70.Di, 73.40.Qv, 73.50.Jt, 71.15.Ap, 71.35.Lk (all)
  17. Yu.A. Bychkov, E.I. Rashba “Spectrum of a 2D electron gas in an inversion layer28 632–633 (1985)
    73.20.At, 73.40.Qv, 71.70.Ej (all)
  18. V.M. Pudalov, S.G. Semenchinskii “Galvanomagnetic properties of a 2D electron layer in silicon under conditions of a quantized Hall resistance28 634–635 (1985)
    72.20.My, 73.40.Qv, 73.43.Fj (all)
  19. S.P. Andreev “Spectra and kinetics of systems with magnetic-impurity states in a potential with finite range27 431–447 (1984)
    75.30.Hx, 71.18.+y, 72.20.My, 72.20.Jv, 71.70.Di (all)
  20. Yu.I. Ukhanov “Magnetooptic Faraday effect in semiconductors16 236–250 (1973)
    78.20.Ls, 78.20.Bh, 71.20.Mq, 71.20.Nr, 71.18.+y, 71.70.Di (all)
  21. A.M. Zlobin, P.S. Zyryanov “Hot electrons in semiconductors subjected to quantizing magnetic fields14 379–393 (1972)
    72.20.Ht, 63.20.Kr, 71.70.Di, 72.20.Dp (all)
  22. G.S. Buberman “The band structure of diamond14 180–196 (1971)
    71.20.Mq, 71.15.Ap, 71.55.Cn (all)
  23. A.S. Davydov “The theory of molecular excitons7 145–178 (1964)
    71.35.Cc, 78.55.Kz, 71.18.+y, 71.55.Ht, 71.35.Lk (all)
  24. N.N. Bogolyubov “The compensation principle and the self-consistent field method2 236–254 (1959)
    71.15.Mb, 74.20.−z, 74.25.Kc, 71.45.Gm, 71.15.Ap (all)
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