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Abstract
The nature of the spin excitations in superconducting cuprates is a key question toward a unified understanding of the cuprate physics from long-range antiferromagnetism to superconductivity. The intense spin excitations up to the over-doped regime revealed by resonant inelastic X-ray scattering bring new insights as well as questions like how to understand their persistence or their relation to the collective excitations in ordered magnets (magnons). Here, we study the evolution of the spin excitations upon hole-doping the superconducting cuprate Bi2Sr2CaCu2O8+δ by disentangling the spin from the charge excitations in the experimental cross section. We compare our experimental results against density matrix renormalization group calculations for a t-J-like model on a square lattice. Our results unambiguously confirm the persistence of the spin excitations, which are closely connected to the persistence of short-range magnetic correlations up to high doping. This suggests that the spin excitations in hole-doped cuprates are related to magnons—albeit short-ranged.
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1 Paul Scherrer Institut, Photon Science Division, Swiss Light Source, Villigen PSI, Switzerland (GRID:grid.5991.4) (ISNI:0000 0001 1090 7501)
2 University of Warsaw, Institute of Theoretical Physics, Faculty of Physics, Warsaw, Poland (GRID:grid.12847.38) (ISNI:0000 0004 1937 1290)
3 University of Geneva, Department of Quantum Matter Physics, Genève 4, Switzerland (GRID:grid.8591.5) (ISNI:0000 0001 2322 4988)
4 Technical University Dresden, Department of Physics, Dresden, Germany (GRID:grid.4488.0) (ISNI:0000 0001 2111 7257); IFW Dresden, Institute for Theoretical Solid State Physics, Dresden, Germany (GRID:grid.14841.38) (ISNI:0000 0000 9972 3583)