PACS numbers

72.40.+w Photoconduction and photovoltaic effects 73.30.+y Surface double layers, Schottky barriers, and work functions 89.30.Cc Solar power
  1. V.A. Milichko, A.S. Shalin et alSolar photovoltaics: current state and trends59 727–772 (2016)
    42.25.Bs, 42.79.Wc, 61.46.−w, 71.20.Nr, 71.20.Rv, 72.40.+w, 72.80.Cw, 84.60.Jt (all)
  2. L.I. Ryabova, D.R. Khokhlov “Terahertz photoconductivity and nontrivial local electronic states in doped lead telluride-based semiconductors57 959–969 (2014)
    72.40.+w, 73.20.Hb (all)
  3. O.N. Krokhin “Electric power transmission using laser radiation49 425–428 (2006)
    01.10.Fv, 42.60.−v, 42.79.Gn, 72.40.+w (all)
  4. V.F. Elesin “Absolute negative conductivity phenomena in non-equilibrium three-dimensional semiconductors48 183–187 (2005)
    72.20.−i, 72.20.My, 72.40.+w (all)
  5. V.F. Gantmakher, V.N. Zverev “Magnetoimpurity resonances as indicators of an inverse photoelectron distribution function in semiconductors48 187–191 (2005)
    72.20.−i, 72.20.My, 72.40.+w (all)
  6. V.I. Ryzhii “Microwave-induced negative conductivity and zero-resistance states in two-dimensional electronic systems: history and current status48 191–198 (2005)
    72.20.−i, 72.20.My, 72.40.+w (all)
  7. V.S. Vavilov, P.C. Euthymiou, G.E. Zardas “Persistent photoconductivity in semiconducting III-V compounds42 199–201 (1999)
    72.20.Jv, 72.40.+w, 72.80.Ey (all)
  8. V.T. Dolgopolov “Percolation metal-dielectric transitions in two-dimensional electron systems39 398–401 (1996)
    01.10.Fv, 64.60.Ak, 71.30.+h, 73.30.+y (all)
  9. B.V. Vasil’ev, V.L. Lyuboshits “Virial theorem and some properties of the electron gas in metals37 345–351 (1994)
    71.45.−d, 72.15.Eb, 62.20.Dc, 73.30.+y (all)
  10. B.V. Vasil’ev, M.I. Kaganov, V.L. Lyuboshits “State of the conduction electrons and the work function of a metal37 353–356 (1994)
    71.25.Pi, 72.15.Eb, 73.30.+y (all)
  11. V.I. Kudinov, N.M. Kreines “Metastable photoinduced superconductivity in YBa2Cu3O6.4 films near the semiconductor-metal transition35 (8) 720–722 (1992)
    74.78.Bz, 74.72.Bk, 72.40.+w (all)
  12. E.A. Andryushin, A.P. Silin “Physical problems in solar energy34 (8) 705–710 (1991)
    89.30.Cc, 72.40.+w, 73.30.+y (all)
  13. V.S. Edel’man “The development of scanning tunneling microscopy34 (3) 272–273 (1991)
    07.79.Cz, 68.37.Ef, 72.40.+w, 78.55.Cr, 74.72.Bk, 78.67.Pt (all)
  14. V.M. Arutyunyan “Physical properties of the semiconductor-electrolyte interface32 521–542 (1989)
    72.40.+w, 73.40.Mr, 78.55.Et, 82.45.Gj, 82.45.Vp (all)
  15. M.S. Khaikin “Scanning tunneling microscopy and spectroscopy31 473–474 (1988)
    68.37.Ef, 73.30.+y, 68.35.Bs, 74.72.Bk, 74.50.+r (all)
  16. I.M. Tsidil’kovskii “Crystallization of a three-dimensional electron gas30 676–698 (1987)
    71.10.Ca, 71.45.Lr, 72.20.My, 72.40.+w, 72.80.Ey (all)
  17. Yu.Kh. Vekilov, V.D. Verner, M.B. Samsonova “Electron structure of surfaces of nontransition metals30 172–192 (1987)
    73.20.At, 71.20.Dg, 71.20.Gj, 73.30.+y, 68.35.Md (all)
  18. A.L. Buchachenko, Yu.N. Molin et alMagneto-spin effects in chemical reactions30 79–80 (1987)
    75.30.Et, 75.30.Ds, 72.20.Jv, 72.40.+w, 82.30.Cf (all)
  19. S.G. Tikhodeev “The electron-hole liquid in a semiconductor28 1–30 (1985)
    71.35.Ee, 63.20.Kr, 72.40.+w, 72.30.+q, 72.80.Cw (all)
  20. A.Ya. Belen’kii “Electronic surface states of crystals24 412–425 (1981)
    73.20.Cw, 73.30.+y
  21. V.I. Belinicher, B.I. Sturman “The photogalvanic effect in media lacking a center of symmetry23 199–223 (1980)
    72.40.+w
  22. M.B. Partenskii “Self-consistent electron theory of a metallic surface22 330–351 (1979)
    73.20.Cw, 73.30.+y, 68.45.-v
  23. V.M. Fridkin, B.N. Popov “Anomalous photovoltaic effect in ferroelectrics21 981–991 (1978)
    72.40.+w, 77.80.−e (all)
  24. I.K. Kikoin, S.D. Lazarev “Photoelectromagnetic effect21 297–308 (1978)
    72.40.+w
  25. L.A. Bol’shov, A.P. Napartovich et alSubmonolayer films on the surface of metals20 432–451 (1977)
    73.20.Cw, 73.30.+y, 82.65.My
  26. I.A. Sokolik, E.L. Frankevich “The effect of magnetic fields on photoprocesses in organic solids16 687–701 (1974)
    72.40.+w, 78.55.Kz, 72.80.Le, 71.35.−y (all)
  27. E.I. Adirovich “Major Research Trends in the Fields of Physics and Astronomy at the Institute of the Uzbek Academy of Sciences14 788–789 (1972)
    73.50.Pz, 72.40.+w (all)
  28. G.Ya. Umarov “Development of Research on the Utilization of Solar Energy within the System of the Uzbek Academy of Sciences14 794–796 (1972)
    89.30.Cc
  29. Ya.A. Agaev “Research in the Field of Semiconductor Physics at the Physico-technical Institute of the Turkmenian Academy of Sciences14 797–798 (1972)
    72.20.Pa, 72.20.My, 72.40.+w, 72.80.Ey (all)
  30. V.N. Vertsner, L.P. Strakhov “Aleksandr Alekseevich Lebedev (1893-1969)12 697–698 (1970)
    01.60.+q, 72.40.+w, 42.79.−e (all)
  31. V.S. Vavilov “The nature and energy spectrum of radiation defects in semiconductors7 797–808 (1965)
    71.55.Cn, 61.82.Fk, 72.40.+w, 72.80.Cw (all)
  32. K.B. Tolpygo, I.B. Levinson “Fifth All-Union conference on the theory of semiconductors6 825–833 (1964)
    01.30.Cc, 71.15.−m, 72.40.+w, 72.20.Fr, 72.20.My, 72.20.Pa (all)
  33. V.S. Vavilov “Radiation ionization processes in germanium and silicon crystals4 761–769 (1962)
    72.40.+w, 72.80.Cw, 72.20.Jv (all)
  34. V.M. Fridkin “Symposium on physical fundamentals of the electrophotographic process4 637–639 (1962)
    07.68.+m, 72.40.+w (all)
  35. E.F. Gross “Excitons and their motion in crystal lattices5 195–218 (1962)
    71.35.Aa, 71.35.Cc, 72.40.+w, 71.70.Ej, 78.20.Ls, 78.55.Hx (all)
  36. G.M. Guro “Characteristic times of electronic processes in seminconductors3 895–911 (1961)
    72.20.Jv, 65.40.−b, 72.40.+w, 71.18.+y, 66.30.Dn (all)
  37. N.D. Morgulis “Conversion of thermal energy into electricity with the aid of thermoelectric emission3 251–259 (1960)
    73.50.Lw, 73.50.Mx, 85.80.Fi, 79.40.+z, 73.30.+y (all)
  38. É.V. Shpol’skii “PROBLEMS OF SEMICONDUCTORS2 628–629 (1959)
    01.30.Vv, 71.35.−y, 72.20.Pa, 72.40.+w, 01.30.Rr (all)
  39. E.Ya. Zandberg, N.I. Ionov “Surface ionization2 255–281 (1959)
    73.30.+y, 79.70.+q, 68.47.De, 68.47.Fg, 68.35.Md, 73.20.At (all)
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