arXiv · 0902.1361
Spectral and optical properties in the antiphase stripe phase of the cuprate superconductors
Abstract
We investigate the superconducting order parameter, the spectral and optical properties in a stripe model with spin (charge) domain-derived scattering potential $V_{s}$ ($V_{c}$). We show that the charge domain-derived scattering is less effective than the spin scattering on the suppression of superconductivity. For $V_{s}\gg V_{c}$, the spectral weight concentrates on the ($π,0$) antinodal region, and a finite energy peak appears in the optical conductivity with the disappearance of the Drude peak. But for $V_{s}\approx V_{c}$, the spectral weight concentrates on the ($π/2,π/2$) nodal region, and a residual Drude peak exists in the optical conductivity without the finite energy peak. These results consistently account for the divergent observations in the ARPES and optical conductivity experiments in several high-$T_c$ cuprates, and suggest that the "insulating" and "metallic" properties are intrinsic to the stripe state, depending on the relative strength of the spin and charge domain-derived scattering potentials.
Explore related subjects
Keep this discovery
Hong-Min Jiang, Cui-Ping Chen, Jian-Xin Li. 2009-05-04. Spectral and optical properties in the antiphase stripe phase of the cuprate superconductors. https://doi.org/10.1088/0953-8984%2F21%2F37%2F375701
Cite the original work for its findings. Save a collection to share your selection of sources.