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Evidence for a liquid crystal phase transition in two-dimensional electrons in high Landau levels

  • K. B. Cooper
  • , M. P. Lilly
  • , J. P. Eisenstein
  • , L. N. Pfeiffer
  • , K. W. West

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Abstract

Transport measurements of high-mobility two-dimensional electron systems at low temperatures have revealed a large resistance anisotropy around half-filling of excited Landau levels. These results have been attributed to electronic stripe-phase formation with spontaneously broken orientational symmetry. Mechanisms which are known to break the orientational symmetry include poorly-understood crystal structure effects and an in-plane magnetic field, B∥. Here we report that a large B∥ also causes the transport anisotropy to persist up to much higher temperatures. In this regime, we find that the anisotropic resistance scales sublinearly with B∥/T. These observations support the proposal that the transition from anisotropic to isotropic transport reflects a liquid crystal phase transition where local stripe order persists even in the isotropic regime.
Original languageEnglish
Title of host publicationJournal De Physique. IV : JP
Volume12
Edition9
StatePublished - Nov 1 2002
Externally publishedYes

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