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Microscopic derivation of the effective Lagrangian for skyrmions in an interacting two-dimensional electron gas at small g-factor

 a,  b
a Physikalisch-Technische Bundesanstalt, Braunschweig, Germany
b L.D. Landau Institute for Theoretical Physics, Russian Academy of Sciences, Chernogolovka, Moscow Region, Russian Federation
Fulltext pdf (230 KB)
Fulltext is also available at DOI: 10.1070/PU1998v041n02ABEH000345
PACS: 72.70.+m, 73.40.Hm, 73.50.Td (all)
DOI: 10.1070/PU1998v041n02ABEH000345
URL: https://ufn.ru/en/articles/1998/2/j/
000072729300009
Citation: Apel W, Bychkov Yu A "Microscopic derivation of the effective Lagrangian for skyrmions in an interacting two-dimensional electron gas at small g-factor" Phys. Usp. 41 134–138 (1998)
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Оригинал: Апель В, Бычков Ю А «Микроскопический вывод эффективного лагранжиана для скирмионов в двумерном газе взаимодействующих электронов при малом g-факторе» УФН 168 143–146 (1998); DOI: 10.3367/UFNr.0168.199802i.0143

References (16) Cited by (1) Similar articles (20) ↓

  1. S.V. Iordanskii “Non-singular vortex-skyrmions in a two-dimensional electron system41 131–134 (1998)
  2. V.T. Dolgopolov, A.A. Shashkin et alNonlinear screening, and spin and cyclotron gaps in the 2D electron gas of GaAs/AlGaAs heterojunctions41 138–141 (1998)
  3. L.S. Levitov, A.V. Shitov, B.I. Halperin “Effective action and Green’s function for a compressible QH edge state41 141–145 (1998)
  4. Ya.M. Blanter, S.A. van Langen, M. Buttiker “Exchange effects in shot noise in multi-terminal devices41 149–152 (1998)
  5. G.B. Lesovik “Recording zero-point current and voltage fluctuations41 145–149 (1998)
  6. S.I. Dorozhkin, M.O. Dorokhova et alCapacitance spectroscopy of the fractional quantum Hall effect41 127–131 (1998)
  7. I.V. Kukushkin “Experimental verification of the skyrmion concept40 532–534 (1997)
  8. G. Finkelstein, H. Shtrikman, I. Bar-Joseph “Shakeup processes of a two-dimensional electron gas in GaAs/AlGaAs quantum wells at high magnetic fields41 112–114 (1998)
  9. Z.D. Kvon, E.B. Olshanetskii et alCoulomb-like mesoscopic conductance fluctuations in a 2D electron gas near the filling factor ν = 1/241 164–166 (1998)
  10. V.M. Pudalov “The metal-insulator transition in a two-dimensional system at zero magnetic field41 211–214 (1998)
  11. T. Ihn, A. Thornton et alA self-assembled InAs quantum dot used as a quantum microscope looking into a two-dimensional electron gas41 122–125 (1998)
  12. L. Gorelik, S. Kulinich et alPumping of energy into a mesoscopic ring. Exactly solvable model41 178–182 (1998)
  13. E.S. Soldatov, V.V. Khanin et alRoom temperature molecular single-electron transistor41 202–204 (1998)
  14. V.A. Krupenin, S.V. Lotkhov et alSensing of dynamic charge states using single-electron tunneling transistors41 204–206 (1998)
  15. D.A. Ivanov, M.V. Feigel’man “Coulomb effects in a ballistic one-channel S-S-S device41 197–201 (1998)
  16. A. Gold “Superconductor-insulator transition in the disordered Bose condensate: a discussion of the mode-coupling approach41 217–220 (1998)
  17. A.F. Volkov, V.V. Pavlovskii “Phase-coherent phenomena in S-N-S structures41 191–195 (1998)
  18. A.V. Shitov, P.A. Lee, L.S. Levitov “Localization of quasiparticles in an NS structure41 207–210 (1998)
  19. M.E. Gershenson, Yu.B. Khavin, A.L. Bogdanov “Electrons in quasi-one-dimensional conductors: from high-temperature diffusion to low-temperature hopping41 186–189 (1998)
  20. M. Pascaud, G. Montambaux “Interference effects in mesoscopic disordered rings and wires41 182–186 (1998)

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