English

Electron-electron scatttering in Sn-doped indium oxide thick films

Mesoscale and Nanoscale Physics 2013-09-10 v1 Disordered Systems and Neural Networks

Abstract

We have measured the low-field magnetoresistances (MRs) of a series of Sn-doped indium oxide thick films in the temperature TT range 4--35 K. The electron dephasing rate 1/τφ1/\tau_{\varphi} as a function of TT for each film was extracted by comparing the MR data with the three-dimensional (3D) weak-localization theoretical predictions. We found that the extracted 1/τφ1/\tau_{\varphi} varies linearly with T3/2T^{3/2}. Furthermore, at a given TT, 1/τφ1/\tau_{\varphi} varies linearly with kF5/2l3/2k_F^{-5/2}l^{-3/2}, where kFk_{F} is the Fermi wavenumber, and ll is the electron elastic mean free path. These features are well explained in terms of the small-energy-transfer electron-electron scattering time in 3D disordered conductors. This electron dephasing mechanism dominates over the electron-phonon (ee-ph) scattering process because the carrier concentrations in our films are \sim 3 orders of magnitude lower than those in typical metals, which resulted in a greatly suppressed ee-ph relaxation rate.

Keywords

Cite

@article{arxiv.1306.5610,
  title  = {Electron-electron scatttering in Sn-doped indium oxide thick films},
  author = {Yu-Jie Zhang and Zhi-Qing Li and Juhn-Jong Lin},
  journal= {arXiv preprint arXiv:1306.5610},
  year   = {2013}
}

Comments

5 pages, 3 figures

R2 v1 2026-06-22T00:39:12.061Z