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Low-frequency response of pinned charge-density-wave condensates

  • Wei Yu Wu
  • , L. Mihaly
  • , George Mozurkewich
  • , G. Gruner
  • University of California at Los Angeles

Research output: Contribution to journalArticlepeer-review

34 Scopus citations

Abstract

The frequency-dependent conductivity was investigated in the 10 Hz to -500 MHz range in materials with an incommensurate charge-density wave. NbSe3, orthorhombic TaS3, and (TaSe4)2I. Over a wide range of frequencies both Re and Im are described by the expression =C with <1, and have different values for each material. The -dependent response is in clear disagreement with descriptions which neglect the internal degrees of freedom of the condensate. The excess low-frequency conductivity is due to the disorder caused by random distribution of pinning centers. The results are compared with calculations based on a microscopic phase Hamiltonian, which takes impurity pinning into account. The results are in semiquantitative agreement with a modified form of the Mott-Berezhinskii law for one-dimensional hopping conductivity, and they are in qualitative agreement with the classical, relaxational dynamics approach in the 0 limit. We also discuss the relation of our experimental findings to other studies of the frequency-dependent response in these materials.

Original languageEnglish
Pages (from-to)2444-2454
Number of pages11
JournalPhysical Review B
Volume33
Issue number4
DOIs
StatePublished - 1986

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