Physics – Condensed Matter – Disordered Systems and Neural Networks
Scientific paper
2002-09-25
Phys. Rev. B 67, 205306 (2003)
Physics
Condensed Matter
Disordered Systems and Neural Networks
5 pages, 6 figures
Scientific paper
10.1103/PhysRevB.67.205306
The contribution of the electron-electron interaction to conductivity is analyzed step by step in gated GaAs/InGaAs/GaAs heterostructures with different starting disorder. We demonstrate that the diffusion theory works down to $k_F l\simeq 1.5-2$, where $k_F$ is the Fermi quasimomentum, $l$ is the mean free paths. It is shown that the e-e interaction gives smaller contribution to the conductivity than the interference independent of the starting disorder and its role rapidly decreases with $k_Fl$ decrease.
Germanenko A. V.
Khrykin O. I.
Minkov G. M.
Rut O. E.
Shashkin V. I.
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