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Hallmarks of Hund's coupling in the Mott insulator Ca₂RuO₄

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arxiv 1610.02854 v1 pith:YUXSC5EX submitted 2016-10-10 cond-mat.str-el

Hallmarks of Hund's coupling in the Mott insulator Ca₂RuO₄

classification cond-mat.str-el
keywords couplinghundinsulatingmottstructureelectronicmultibandnature
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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A paradigmatic case of multi-band Mott physics including spin-orbit and Hund's coupling is realised in Ca$_2$RuO$_4$. Progress in understanding the nature of this Mott insulating phase has been impeded by the lack of knowledge about the low-energy electronic structure. Here we provide -- using angle-resolved photoemission electron spectroscopy -- the band structure of the paramagnetic insulating phase of Ca$_2$RuO$_4$ and show how it features several distinct energy scales. Comparison to a simple analysis of atomic multiplets provides a quantitative estimate of the Hund's coupling $J=0.4$ eV. Furthermore, the experimental spectra are in good agreement with electronic structure calculations performed with Dynamical Mean-Field Theory. The crystal field stabilisation of the d$_{xy}$ orbital due to $c$-axis contraction is shown to be important in explaining the nature of the insulating state. It is thus a combination of multiband physics, Coulomb interaction and Hund's coupling that generates the Mott insulating state of Ca$_2$RuO$_4$. These results underscore the importance of Hund's coupling in the ruthenates and related multiband materials.

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