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Prog. Theor. Phys. Vol. 68 No. 5 (1982) pp. 1443-1459

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Impurity Scattering and Electrical Conductivity in a One-Dimensional Conductor

Kiyomi Okamoto

Department of Applied Physics, Faculty of Science, Tokyo Institute of Technology, Tokyo 152

(Received April 1, 1982)

Abstract:

Electrical conductivity of a one-dimensional conductor in the presence of impurities is calculated. The phase representation of the BGD model is used. Only the so-called strong coupling case (g1<0, g1 is the coupling constant of backward scattering) is considered. The impurity scattering part of the Hamiltonian (Himp) is highly non-linear with respect to the local phase variation of CDW. A new diagram technic is established for the perturbational expansion of the phase Green's function with respect to Himp. The electrical conductivity goes to zero or infinity at T→0 according as the CDW response function diverges or not at T→0.


URL : http://ptp.ipap.jp/link?PTP/68/1443/
DOI : 10.1143/PTP.68.1443

[ Full Text PDF : FREE ACCESS (572K) ] Citation:


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Citing Article(s) :

  1. Progress of Theoretical Physics Vol. 69 No. 5 (1983) pp. 1666-1668 :
    Electrical Conductivity of a Quasi-One-Dimensional Superconductor
    Kiyomi Okamoto
  2. Progress of Theoretical Physics Vol. 71 No. 4 (1984) pp. 677-688 :
    A Theory of a One-Dimensional System of Interacting Electrons in a 2kF-Periodic Potential
    Tadao Sugiyama, Jumpei Kumagai amd Kiyomi Okamoto