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Fizika i Tekhnika Poluprovodnikov, 2011 Volume 45, Issue 2, Pages 207–212 (Mi phts8461)

Semiconductor structures, low-dimensional systems, quantum phenomena

Piecewise parabolic negative magnetoresistance of two-dimensional electron gas with triangular antidot lattice

M. V. Budantseva, R. A. Lavrova, A. G. Pogosovab, E. Yu. Zhdanovab, D. A. Pokhabovab

a Rzhanov Institute of Semiconductor Physics, Siberian Branch of Russian Academy of Sciences, Novosibirsk
b Novosibirsk State University

Abstract: Extraordinary piecewise parabolic behavior of the magnetoresistance has been experimentally detected in the two-dimensional electron gas with a dense triangular lattice of antidots, where commensurability magnetoresistance oscillations are suppressed. The magnetic field range of 0–0.6 T can be divided into three wide regions, in each of which the magnetoresistance is described by parabolic dependences with high accuracy (comparable to the experimental accuracy) and the transition regions between adjacent regions are much narrower than the regions themselves. In the region corresponding to the weakest magnetic fields, the parabolic behavior becomes almost linear. The observed behavior is reproducible as the electron gas density changes, which results in a change in the resistance by more than an order of magnitude. Possible physical mechanisms responsible for the observed behavior, including so-called “memory effects”, are discussed.

Received: 15.06.2010
Accepted: 29.06.2010


 English version:
Semiconductors, 2011, 45:2, 203–207

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