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Spin-orbit driven magnetic insulating state with {J}_(eff)=1/2 character in a 4d oxide

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arxiv 1511.09431 v1 pith:Q32JB3BP submitted 2015-11-30 cond-mat.str-el cond-mat.mtrl-sci

Spin-orbit driven magnetic insulating state with {J}_(eff)=1/2 character in a 4d oxide

classification cond-mat.str-el cond-mat.mtrl-sci
keywords magneticgroundinsulatingmathbfmathrmstatecharacterdriven
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The unusual magnetic and electronic ground states of 5d iridates has been shown to be driven by intrinsically enhanced spin-orbit coupling (SOC). The influence of appreciable but reduced SOC in creating the manifested magnetic insulating states in 4d oxides is less clear, with one hurdle being the existence of such compounds. Here we present experimental and theoretical results on Sr$_4$RhO$_6$ that reveal SOC dominated behavior. Neutron measurements show the octahedra are both spatially separated and locally ideal, making the electronic ground state susceptible to alterations by SOC. Magnetic ordering is observed with a similar structure to an analogous ${J}_{\mathrm{eff}}\mathbf{=}1/2$ Mott iridate. We consider the underlying role of SOC in this rhodate with density functional theory and x-ray absorption spectroscopy and find a magnetic insulating ground state with ${J}_{\mathrm{eff}}\mathbf{=}1/2$ character.

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