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Spin and orbital dynamics through the metal-to-insulator transition in Cd₂Os₂O₇ probed with high-resolution RIXS

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arxiv 1812.08689 v2 pith:2DQWMWC7 submitted 2018-12-20 cond-mat.str-el

Spin and orbital dynamics through the metal-to-insulator transition in Cd₂Os₂O₇ probed with high-resolution RIXS

classification cond-mat.str-el
keywords magnetichigh-resolutionmetal-to-insulatorrixsscatteringtransitionagreementall-in
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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High-resolution resonant inelastic x-ray scattering (RIXS) measurements ($\Delta$E = 46 meV) have been performed on Cd$_2$Os$_2$O$_7$ through the metal-to-insulator transition (MIT). A magnetic excitation at 125 meV evolves continuously through the MIT, in agreement with recent Raman scattering results, and provides further confirmation for an all-in, all-out magnetic ground state. Asymmetry of this feature is likely a result of coupling between the electronic and magnetic degrees of freedom. We also observe a broad continuum of interband excitations centered at 0.3 eV energy loss. This is indicative of significant hybridization between Os 5$d$ and O 2$p$ states, and concurrent itinerant nature of the system. In turn, this suggests a possible break down of the free-ion model for Cd$_2$Os$_2$O$_7$.

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