A Novel ground state in a new dimer iridate Ba13Ir6O30 with Ir6+(5d3) Ions
Hengdi Zhao, Feng Ye, Hao Zheng, Bing Hu, Yifei Ni, Yu Zhang, Itamar, Kimchi, Gang Cao

TL;DR
This study reports the synthesis and characterization of a new iridate Ba13Ir6O30, revealing unique magnetic properties, large effective spins, and potential for exotic magnetic states like skyrmion crystals due to strong spin-orbit coupling and frustration.
Contribution
The paper introduces a novel iridate with unusual Ir oxidation states and complex magnetic behavior, including potential skyrmion formation, driven by strong spin-orbit interactions and high-spin states.
Findings
Exhibits two magnetic transitions at 4.7 K and 1.6 K.
Displays a large Sommerfeld coefficient indicating heavy fermion-like behavior.
Suggests highly frustrated ferrimagnetic order possibly forming skyrmion crystals.
Abstract
We have synthesized and studied a new iridate, Ba13Ir6O30, with unusual Ir oxidation states: 2/3 Ir6+(5d3) ions and 1/3 Ir5+(5d4) ions. Its crystal structure features dimers of face-sharing IrO6 octahedra, and IrO6 monomers, that are linked via long, zigzag Ir-O-Ba-O-Ir pathways. Nevertheless, Ba13Ir6O30 exhibits two transitions at TN1 = 4.7 K and TN2 = 1.6 K. This magnetic order is accompanied by a huge Sommerfeld coefficient 200 mJ/mole K below TN2, signaling a coexisting frustrated/disordered state persisting down to at least 0.05 K. This iridate hosts unusually large Jeff=3/2 degrees of freedom, which is enabled by strong spin-orbit interactions (SOI) in the monomers with Ir6+ ions and a joint effect of molecular orbitals and SOI in the dimers occupied by Ir5+ and Ir6+ ions. Features displayed by the magnetization and heat capacity suggest that the combination of covalency, SOI and…
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