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Spin-Orbit Coupling and Electronic Correlations in Sr2RuO4

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arxiv 1707.02462 v2 pith:UAZDTNVS submitted 2017-07-08 cond-mat.str-el

Spin-Orbit Coupling and Electronic Correlations in Sr2RuO4

classification cond-mat.str-el
keywords electroniccouplingspin-orbitcorrelationseffectsfoundmaterialsnotion
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We investigate the interplay of spin-orbit coupling (SOC) and electronic correlations in Sr2RuO4 using dynamical mean-field theory. We find that SOC does not affect the correlation-induced renormalizations, which validates the Hund's metal picture of ruthenates even in the presence of the sizable SOC relevant to these materials. Nonetheless, SOC found to change significantly the electronic structure at k-points where a degeneracy applies in its absence. We explain why these two observations are consistent with one another and calculate effects of SOC on the correlated electronic structure. The magnitude of these effects is found to depend on the energy of the quasiparticle state under consideration, leading us to introduce the notion of an "energy-dependent quasiparticle spin-orbit coupling". This notion is generally applicable to all materials in which both the spin-orbit coupling and electronic correlations are sizable.

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