Magnetic excitations in L-edge resonant inelastic x-ray scattering from cuprate compounds
Jun-ichi Igarashi, Tatsuya Nagao

TL;DR
This paper investigates magnetic excitations in cuprate compounds using L-edge RIXS, deriving spectra related to spin correlations, and compares theoretical predictions with experimental data to reveal multi-magnon contributions.
Contribution
The study introduces a detailed theoretical framework for interpreting RIXS spectra in cuprates, including multi-magnon effects and higher-order corrections, advancing understanding of magnetic excitations.
Findings
RIXS spectra are expressed as dynamical structure factors of transverse spins.
Three-magnon excitations significantly contribute to high-energy spectral features.
Theoretical spectra agree with experimental observations of asymmetry and width in magnon peaks.
Abstract
We study the magnetic excitation spectra in L-edge resonant inelastic x-ray scattering (RIXS) from undoped cuprates. We analyze the second-order dipole allowed process that the strong perturbation works through the intermediate state in which the spin degree of freedom is lost at the core-hole site. Within the approximation neglecting the perturbation on the neighboring sites, we derive the spin-flip final state in the scattering channel with changing the polarization, which leads to the RIXS spectra expressed as the dynamical structure factor of the transverse spin components. We assume a spherical form of the spin-conserving final state in the channel without changing the polarization, which leads to the RIXS spectra expressed as the 'exchange'-type multi-spin correlation function. Evaluating numerically the transition amplitudes to these final states on a finite-size cluster, we…
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