Nearly itinerant electronic groundstate in the intercalated honeycomb iridate AgLiIrO
arXiv:2106.05309 · doi:10.1103/PhysRevB.104.L100416
Abstract
We use x-ray spectroscopy at Ir L/L absorption edge to study powder samples of the intercalated honeycomb magnet AgLiIrO. Based on x-ray absorption and resonant inelastic x-ray scattering measurements, and exact diagonalization calculations including next-neighbour Ir-Ir electron hoping integrals, we argue that the intercalation of Ag atoms results in a nearly itinerant electronic structure with enhanced Ir-O hybridization. As a result of the departure from the local relativistic state, we find that the relative orbital contribution to the magnetic moment is increased, and the magnetization density is spatially extended and asymmetric. Our results confirm the importance of metal - ligand hybridazation in the magnetism of transition metal oxides and provide empirical guidance for understanding the collective magnetism in intercalated honeycomb iridates.
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- Role of disorder in the electronic and magnetic properties of AgLiIrO
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- A set-up for Hard X-ray Time-resolved Resonant Inelastic X-ray Scattering at SwissFEL
- Novel electronic state of honeycomb iridate CuIrO at high pressure
- Signatures of Floquet Engineering in the proximal Kitaev Quantum Spin Liquid HLiIrO by tr-RIXS
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- Signatures of a Majorana-Fermi surface in the Kitaev magnet AgLiIrO