Doping-dependent phonon anomaly and charge-order phenomena in the HgBaCuO and HgBaCaCuO
arXiv:1910.08254 · doi:10.1103/PhysRevB.101.220509
Abstract
Using resonant X-ray diffraction and Raman spectroscopy, we study charge correlations and lattice dynamics in two model cuprates, HgBaCuO and HgBaCaCuO. We observe a maximum of the characteristic charge order temperature around the same hole concentration () in both compounds, and concomitant pronounced anomalies in the lattice dynamics that involve the motion of atoms in and/or adjacent to the CuO layers. These anomalies are already present at room temperature, and therefore precede the formation of the static charge correlations, and we attribute them to an instability of the CuO layers. Our finding implies that the charge order in the cuprates is an emergent phenomenon, driven by a fundamental variation in both lattice and electronic properties as a function of doping.
4 pages, 3 figures, supplemental material available upon request
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Cited by in corpus (5)
- Charge order at high temperature in cuprate superconductors
- Paramagnons and high-temperature superconductivity in mercury-based cuprates
- Exploration of the Hg-based cuprate superconductors by Raman spectroscopy under hydrostatic pressure
- Weyl-Luttinger phase transition in pyrochlore iridates revealed by Raman scattering
- Strain-induced structural change and nearly-commensurate diffuse scattering in the model high-temperature superconductor HgBaCuO