Issues

 / 

1976

 / 

May

  

Reviews of topical problems


Anisotropic size effects in semiconductors and semimetals

Large differences between the characteristic times of various electronic relaxation processes (momentum relaxation, energy relaxation, intervalley relaxation, electron-hole recombination) make it possible to divide carriers into groups between which relaxation is relatively slow. Each of the ``long'' relaxation times can be matched by a characteristic diffusion length which is much greater than the usual mean free path. Transport coefficients of such groups are generally anisotropic even in cubic crystals and the anisotropy varies from group to group (this anisotropy may be natural or it may be induced by pressure, magnetic field, etc.). Therefore, the passage of a current produces nonequilibrium carrier densities in such groups. The density gradients are oriented at right-angles to the current and they decay over distances of the order of the diffusion length. The effects associated with the formation of nonequilibrium carriers and the influence of their diffusion on the transport coefficients are referred to in the paper as the anisotropic size effects. The paper reviews experimental and theoretical investigations of various manifestations of such effects. An analysis is made of the size dependences of the electrical conductivity and magnetoresistance manifested in ``thick'' samples (thickness of the order of the diffusion length). Other topics considered include nonlinearity of the electrical conductivity in relatively weak fields, redistribution of carriers in ``strong'' fields (accompanied by giant changes in the total number of carriers and by formation of domains, depletion layers, and accumulation layers), influence of the anisotropic size effects on the skin effect (which changes the surface impedance of semimetals by an order of magnitude), and electromagnetic excitation of sound in semimetals.

PACS: 72.20.My, 72.20.Fr, 72.10.−d (all)
DOI: 10.1070/PU1976v019n05ABEH005258
URL: https://ufn.ru/en/articles/1976/5/a/
Citation: Rashba É I, Gribnikov Z S, Kravchenko V Ya "Anisotropic size effects in semiconductors and semimetals" Sov. Phys. Usp. 19 361–387 (1976)
BibTexBibNote ® (generic)BibNote ® (RIS)MedlineRefWorks

Оригинал: Рашба Э И, Грибников З С, Кравченко В Я «Анизотропные размерные эффекты в полупроводниках и полуметаллах» УФН 119 3–47 (1976); DOI: 10.3367/UFNr.0119.197605a.0003

Cited by (39) Similar articles (20) ↓

  1. A.F. Andreev “Interaction of conduction electrons with a Metal surface14 609–615 (1972)
  2. A.B. Brandt, E.A. Svistova “Electronic transitions in strong magnetic fields13 370–383 (1970)
  3. M.Yu. Kagan, K.I. Kugel’ “Inhomogeneous charge distributions and phase separation in manganites44 553–570 (2001)
  4. S.P. Andreev “Spectra and kinetics of systems with magnetic-impurity states in a potential with finite range27 431–447 (1984)
  5. I.M. Lifshitz, M.I. Kaganov “Some problems of the electron theory of metals III. Kinetic properties of electrons in metals8 805–851 (1966)
  6. Ya.B. Zel’dovich, A.L. Buchachenko, E.L. Frankevich “Magnetic-spin effects in chemistry and molecular physics31 385–408 (1988)
  7. A.P. Zhernov, A.V. Inyushkin “Kinetic coefficients in isotopically disordered crystals45 527–552 (2002)
  8. A.F. Barabanov, Yu.M. Kagan et alThe Hall effect and its analogs58 446–454 (2015)
  9. B.A. Tavger, V.Ya. Demikhovskii “Quantum size effects in semiconducting and semimetallic films11 644–658 (1969)
  10. R.V. Parfen’ev, G.I. Kharus et alMagnetophonon resonance in semiconductors17 1–19 (1974)
  11. V.I. Kaidanov, Yu.I. Ravich “Deep and resonance states in AIV BVI semiconductors28 31–53 (1985)
  12. G.B. Lesovik, I.A. Sadovskyy “Scattering matrix approach to the description of quantum electron transport54 1007–1059 (2011)
  13. K.V. Reich “Conductivity of quantum dot arrays63 994–1014 (2020)
  14. V.V. Lemanov, G.A. Smolenskii “Hypersonic waves in crystals15 708–727 (1973)
  15. K.P. Belov, E.P. Svirina “The Hall effect in ferrites11 620–630 (1969)
  16. A.P. Silin “Semiconductor superlattices28 972–993 (1985)
  17. I.I. Lyapilin, I.M. Tsidil’kovskii “Narrow-gap semimagnetic semiconductors28 349–371 (1985)
  18. I.M. Tsidil’kovskii “Crystallization of a three-dimensional electron gas30 676–698 (1987)
  19. E.L. Stolyarova “Semiconductor detectors of nuclear radiation6 872–887 (1964)
  20. I.M. Tsidil’kovskii “Zero-gap semiconductors with magnetic impurities forming resonance donor states35 (2) 85–105 (1992)

The list is formed automatically.

© 1918–2024 Uspekhi Fizicheskikh Nauk
Email: ufn@ufn.ru Editorial office contacts About the journal Terms and conditions