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Magnon Splitting Induced by Charge Transfer in the Three-Orbital Hubbard Model

Authors :
Thomas P. Devereaux
Brian Moritz
Edwin W. Huang
Yao Wang
Source :
Physical Review Letters. 120
Publication Year :
2018
Publisher :
American Physical Society (APS), 2018.

Abstract

Understanding spin excitations and their connection to unconventional superconductivity have remained a central issue since the discovery of the cuprates. Direct measurement of the dynamical spin structure factor in the parent compounds can provide key information on important interactions relevant in the doped regime, and variations in the magnon dispersion have been linked closely to differences in crystal structure between families of cuprate compounds. Here, we elucidate the relationship between spin excitations and various controlling factors thought to be significant in high-$T_c$ materials by systematically evaluating the dynamical spin structure factor for the three-orbital Hubbard model, revealing differences in the spin dispersion along the Brillouin zone axis and the diagonal. Generally, we find that the absolute energy scale and momentum dependence of the excitations primarily are sensitive to the effective charge-transfer energy, while changes in the on-site Coulomb interactions have little effect on the details of the dispersion. In particular, our result highlights the splitting between spin excitations along the axial and diagonal directions in the Brillouin zone. This splitting decreases with increasing charge-transfer energy and correlates with changes in the apical oxygen position, and general structural variations, for different cuprate families.<br />5 pages, 4 figures

Details

ISSN :
10797114 and 00319007
Volume :
120
Database :
OpenAIRE
Journal :
Physical Review Letters
Accession number :
edsair.doi.dedup.....85ea851b3e2a131731ac3cbd7ae4995c
Full Text :
https://doi.org/10.1103/physrevlett.120.246401