Metal-insulator transition in Si inversion layers in the extreme quantum limit
- 15 November 1992
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 46 (20) , 13303-13308
- https://doi.org/10.1103/physrevb.46.13303
Abstract
We report magnetotransport data of an insulating phase in silicon inversion layers in the extreme quantum limit at a Landau-level filling factor of ν≲1/2. The transport properties have proved to be unexpectedly similar to those of the insulating phase in GaAs/ As heterostructures around ν=1/5 (for electron gas) and ν=1/3 (for hole gas) where magnetically induced Wigner solid formation has been reported. Strongly nonlinear current-voltage characteristics display threshold behavior and tend to saturate as current increases. The similarity of transport properties might strongly suggest the formation of a pinned electron solid in Si inversion layers at ν≲1/2. However, in the presence of a long-range potential, at ν=1/2 the percolation metal-insulator transition is expected. Both the magnetically induced electron solid formation and the percolation transition are considered as possible explanations of the observed effects.
Keywords
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