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Absolute negative conductivity phenomena in non-equilibrium three-dimensional semiconductors


Moscow State Engineering Physics Institute (State University), Kashirskoe shosse 31, Moscow, 115409, Russian Federation
Fulltext pdf (180 KB)
Fulltext is also available at DOI: 10.1070/PU2005v048n02ABEH002108
PACS: 72.20.−i, 72.20.My, 72.40.+w (all)
DOI: 10.1070/PU2005v048n02ABEH002108
URL: https://ufn.ru/en/articles/2005/2/g/
2005PhyU...48..183E
Citation: Elesin V F "Absolute negative conductivity phenomena in non-equilibrium three-dimensional semiconductors" Phys. Usp. 48 183–187 (2005)
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References (22) Cited by (13) Similar articles (20) ↓

  1. V.I. Ryzhii “Microwave-induced negative conductivity and zero-resistance states in two-dimensional electronic systems: history and current status48 191–198 (2005)
  2. V.F. Gantmakher, V.N. Zverev “Magnetoimpurity resonances as indicators of an inverse photoelectron distribution function in semiconductors48 187–191 (2005)
  3. S.I. Dorozhkin “Millimeter-wave response in the magnetoconductivity of highly perfect two-dimensional electron systems48 198–203 (2005)
  4. V.F. Elesin, V.F. Gantmakher et alJoint scientific session of the Physical Sciences Division of the Russian Academy of Sciences and the Joint Physical Society of the Russian Federation ’Absolute Negative Conductivity’ (27 October 2004)48 183 (2005)
  5. V.F. Elesin, Yu.V. Kopaev “’Stark ladder’ laser with a coherent electronic subsystem46 752–755 (2003)
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  19. V.I. Kudinov, N.M. Kreines “Metastable photoinduced superconductivity in YBa2Cu3O6.4 films near the semiconductor-metal transition35 (8) 720–722 (1992)
  20. V.M. Pudalov, S.G. Semenchinskii “A physical standard of the unit of electrical resistance based on the quantum Hall effect31 880–881 (1988)

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