DRUDE WEIGHT AND OPTICAL CONDUCTIVITY OF DOPED ANTIFERROMAGNETS

被引:11
作者
IGARASHI, J [1 ]
FULDE, P [1 ]
机构
[1] MAX PLANCK INST FESTKORPERFORSCH, W-7000 STUTTGART 80, GERMANY
关键词
D O I
10.1103/PhysRevB.48.12713
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The optical conductivity is calculated within the t-J model for low hole-dopant concentrations. The calculations are done on the basis of a Green's-function formalism within a slave-fermion Schwinger-boson representation. The Green's function for holes is calculated in the self-consistent Born approximation to first order in the dopant concentration delta. The Drude weight D is determined by applying a gauge-invariance condition and Ward's identity. It is found that D is proportional to delta and the inverse effective mass of quasiparticles in the hole pockets. It increases gradually with increasing ratio J/t. We compare our results with those of exact diagonalizations. The latter are obtained for larger values of delta only and therefore must be extrapolated to low dopant concentrations. The two results differ and we argue that nonlinear delta dependences of D appear already at rather low delta values. The finite-frequency conductivity is also calculated by taking ar-count of the lowest-order diagrams for the Green's function of the current. Like previous results for exact diagonalizations of small clusters, large weight is found in the vicinity of the frequencies characteristic of spin excitation. It may be associated with the midinfrared band observed in experiments.
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页码:12713 / 12722
页数:10
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