Out-of-phase Plasmon Excitations in the Trilayer Cuprate BiSrCaCuO
arXiv:2502.03779 · doi:10.1103/PhysRevB.111.165141
Abstract
Within a homologous series of cuprate superconductors, variations in the stacking of CuO layers influence the collective charge dynamics through the long-range Coulomb interactions. We use O -edge resonant inelastic x-ray scattering to reveal plasmon excitations in the optimally-doped trilayer BiSrCaCuO. The observed plasmon exhibits nearly -independent dispersion and a large excitation gap of approximately 300 meV. This mode is primarily ascribed to the mode, where the charge density on the outer CuO sheets oscillates out of phase while the density in the inner sheet remains unaltered at . The intensity of the acoustic mode is relatively weak and becomes vanishingly small near . This result highlights a qualitative change in the eigenmode of the dominant low-energy plasmon with the number of CuO layers.
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- Theoretical perspectives on charge dynamics in high-temperature cuprate superconductors