arXiv · cond-mat/0104141
Analysis of the elementary excitations in high-T_c cuprates: explanation of the new energy scale observed by ARPES
Abstract
Using the Hubbard Hamiltonian we analyze the energy- and momentum-dependence of the elementary excitations in high-T$_c$ superconductors resulting from the coupling to spin fluctuations. As a result of the energy dependence of the self-energy $Σ({\bf k}, ω)$, characteristic features occur in the spectral density explaining the 'kink' in recent ARPES experiments. We present results for the spectral density $A({\bf k}, ω)$ resulting from the crossover from Im $Σ({\bf k}, ω)\propto ω$ to Im $Σ({\bf k}, ω)\propto ω^2$, for the feedback of superconductivity on the excitations, and for the superconducting order parameter $Δ({\bf k}, ω)$. These results relate also to inelastic neutron scattering and tunneling experiments and shed important light on the essential ingredients a theory of the elementary excitations in the cuprates must contain.
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D. Manske, I. Eremin, K. H. Bennemann. 2001-09-04. Analysis of the elementary excitations in high-T_c cuprates: explanation of the new energy scale observed by ARPES. https://doi.org/10.1103/physrevlett.87.177005
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