arXiv · cond-mat/0003464
Role of Phase Variables in Quarter-Filled Spin Density Wave States
Abstract
Several kinds of spin density wave (SDW) states with both quarter-filled band and dimerization are reexamined for a one-dimensional system with on-site, nearest-neighbor and next-nearest-neighbor repulsive interactions, which has been investigated by Kobayashi et al. (J. Phys. Soc. Jpn. 67 (1998) 1098). Within the mean-field theory, the ground state and the response to the density variation are calculated in terms of phase variables, $θ$ and $ϕ$, where $θ$ expresses the charge fluctuation of SDW and $ϕ$ describes the relative motion between density wave with up spin and that with down spin respectively. It is shown that the exotic state of coexistence of 2k_F-SDW and 2k_F-charge density wave (CDW) is followed by 4k_F-SDW but not by 4k_F-CDW where k_F denotes a Fermi wave vector. The harmonic potential with respect to the variation of $θ$ and/or $ϕ$ disappears for the interactions, which lead to the boundary between the pure 2k_F-SDW state and the corresponding coexistent state.
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Yuh Tomio, Yoshikazu Suzumura. 2000-03-29. Role of Phase Variables in Quarter-Filled Spin Density Wave States. https://doi.org/10.1143/jpsj.69.796
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