• Title of article

    SO (3) nonlinear σ model for a doped quantum helimagnet Original Research Article

  • Author/Authors

    S. Klee، نويسنده , , A. Muramatsu، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 1996
  • Pages
    40
  • From page
    539
  • To page
    578
  • Abstract
    A field theory describing the low-energy, long-wavelength sector of an incommensurate, spiral magnetic phase is derived from a spin-fermion model that is commonly used as a microscopic model for high-temperature superconductors. After integrating out the fermions in a path-integral representation, a gradient expansion of the fermionic determinant is performed. This leads to an O(3)⊗O(2)-symmetric quantum nonlinear σ model, where the doping dependence is explicitly given by generalized fermionic susceptibilities which enter into the coupling constants of the σ model and contain the fermionic band-structure that results from the spiral background. A stability condition of the field theory self-consistently determines the spiral wavevector as a function of the doping concentration. Furthermore, terms of topological nature like the θ-vacuum term in (1+1)-dimensional nonlinear σ models are obtained for the plane of the spiral.
  • Journal title
    Nuclear Physics B
  • Serial Year
    1996
  • Journal title
    Nuclear Physics B
  • Record number

    878050