English

Quantum corrections to conductivity: from weak to strong localization

Disordered Systems and Neural Networks 2008-12-02 v2

Abstract

Results of detailed investigations of the conductivity and Hall effect in gated single quantum well GaAs/InGaAs/GaAs heterostructures with two-dimensional electron gas are presented. A successive analysis of the data has shown that the conductivity is diffusive for kFl=252k_F l=25-2 and behaves like diffusive one for kFl=20.5k_F l=2-0.5 down to the temperature T=0.4 K. It has been therewith found that the quantum corrections are not small at low temperature when kFl1k_F l\simeq 1. They are close in magnitude to the Drude conductivity so that the conductivity σ\sigma becomes significantly less than e2/he^{2}/h (the minimal σ\sigma value achieved in our experiment is about 3×108Ω13\times 10^{-8}\Omega^{-1} at kFl0.5k_Fl\simeq 0.5 and T=0.46T=0.46 K). We conclude that the temperature and magnetic field dependences of conductivity in whole kFlk_Fl range are due to changes of quantum corrections.

Keywords

Cite

@article{arxiv.cond-mat/0111525,
  title  = {Quantum corrections to conductivity: from weak to strong localization},
  author = {G. M. Minkov and O. E. Rut and A. V. Germanenko and A. A. Sherstobitov and B. N. Zvonkov and E. A. Uskova and A. A. Birukov},
  journal= {arXiv preprint arXiv:cond-mat/0111525},
  year   = {2008}
}

Comments

RevTex 4.0, 10 figures, 7 two-column pages

R2 v1 2026-07-22T10:31:06.051Z