COLLECTIVE MODES OF THE EXTENDED HUBBARD-MODEL WITH NEGATIVE-U AND ARBITRARY ELECTRON-DENSITY

被引:44
作者
KOSTYRKO, T
MICNAS, R
机构
[1] Institute of Physics, A. Mickiewicz University
来源
PHYSICAL REVIEW B | 1992年 / 46卷 / 17期
关键词
D O I
10.1103/PhysRevB.46.11025
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
By use of a diagrammatic method we determine the density-density response functions in the random-phase approximation (RPA) and the collective-excitation spectrum for the extended Hubbard model with on-site attraction and arbitrary electron density, in the superconducting ground state. The energy of the collective modes, given by the poles of these response functions, is found to be a linear function of the wave vector (for small k and short-range intersite interaction) with the velocity interpolating smoothly between the weak- (is-proportional-to 2zt, Absolute value of U << 2zt) and strong-coupling (is-proportional-to zt2/Absolute value of U, Absolute value of U >> 2zt) limits. The latter agrees with the results obtained from an effective pseudospin Hamiltonian valid in the strong-coupling limit. The numerical analysis for a two-dimensional (2D) square lattice shows the occurrence of a roton-like minima near the zone boundary. In the weak-coupling regime we find that apart from a commensurate charge-density-wave (CDW) instability, an increase in the intersite Coulomb repulsion can give rise to a CDW incommensurate with the lattice period, away from half-filling. The resulting phase diagram for the 2D square lattice, including a singlet superconducting ground state, electronic-droplet formation, and CDW's, is determined. Finally, the effects of a long-range Coulomb interaction are analyzed briefly and it is shown that the energy of collective excitations evolves smoothly from the weak- to the strong-coupling limit for a 2D lattice.
引用
收藏
页码:11025 / 11032
页数:8
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