DRUDE WEIGHT, OPTICAL CONDUCTIVITY, AND FLUX PROPERTIES OF ONE-DIMENSIONAL HUBBARD RINGS

被引:157
作者
FYE, RM [1 ]
MARTINS, MJ [1 ]
SCALAPINO, DJ [1 ]
WAGNER, J [1 ]
HANKE, W [1 ]
机构
[1] UNIV WURZBURG,INST PHYS,W-8700 WURZBURG,GERMANY
来源
PHYSICAL REVIEW B | 1991年 / 44卷 / 13期
关键词
D O I
10.1103/PhysRevB.44.6909
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
We study the Drude weight, optical conductivity, and flux-periodicity properties of one-dimensional Hubbard chains using Bethe-ansatz, Lanczos, and exact-diagonalization techniques. We find that the Drude weight D is unexpectedly negative for half-filled Hubbard rings with N = 4n sites reflecting a strong paramagnetic response, while it is positive (diamagnetic) for half-filled rings of N = 4n + 2 sites. In both cases at half filling, D vanishes exponentially with N on a length scale set by the inverse of the gap for small U/t. Near half filling, we find that D approaches a constant, positive, diamagnetic value as N increases, indicating metallic behavior. Combining Bethe-ansatz results near half filling with the known U = 0 and U = infinity limits and Lanczos finite-size extrapolations, we obtain a general picture of D in the thermodynamic limit as a function of band filling and the ratio U/t. We note similarities with the low-frequency integrated spectral weight of certain hole-doped and electron-doped high-T(c) compounds. We investigate the finite-frequency optical conductivity, finding structure at omega almost-equal-to U and, for one hole off half filling, at omega is-proportional-to t2/U. We find that minima in the energy of a Hubbard ring enclosing a flux PHI occur with changes of half a flux quantum rather than a full flux quantum when the Coulomb repulsion is turned on. Lastly, we discuss the relationship of the Drude weight computed from open chains to that obtained from rings, and also the effect of arbitrary phases at the ring boundary.
引用
收藏
页码:6909 / 6915
页数:7
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