English

Distribution Function Analysis of Mesoscopic Hopping Conductance Fluctuations

Condensed Matter 2009-10-28 v2

Abstract

Variable-range hopping (VRH) conductance fluctuations in the gate-voltage characteristics of mesoscopic GaAs and Si transistors are analyzed by means of their full distribution functions (DFs). The forms of the DF predicted by the theory of Raikh and Ruzin have been verified under controlled conditions for both the long, narrow wire and the short, wide channel geometries. The variation of the mean square fluctuation size with temperature in wires fabricated from both materials is found to be described quantitatively by Lee's model of VRH along a 1D chain. Armed with this quantitative validation of the VRH model, the DF method is applied to the problem of magnetoconductance in the insulating regime. Here a non-monotonic variation of the magnetoconductance is observed in Si MOSFETS whose sign at low magnetic fields is dependent on the channel geometry. The origin of this defect is discussed within the framework of the interference model of VRH magnetoconductance in terms of narrowing of the DF in a magnetic field.

Keywords

Cite

@article{arxiv.cond-mat/9603058,
  title  = {Distribution Function Analysis of Mesoscopic Hopping Conductance Fluctuations},
  author = {R. J. F. Hughes and A. K. Savchenko and J. E. F. Frost and E. H. Linfield and J. T. Nicholls and M. Pepper and E. Kogan and M. Kaveh},
  journal= {arXiv preprint arXiv:cond-mat/9603058},
  year   = {2009}
}

Comments

Revtex, 24 pages, 9 figures, figures are added

R2 v1 2026-07-22T11:52:31.215Z