J=1/2 Pseudospins and d-p Hybridization in the Kitaev Spin Liquid Candidates RuX3 (X = Cl, Br, I)

Abstract

The recent synthesis of ruthenium trihalides RuX3 (X = Cl, Br, I) has enlarged the set of material candidates for Kitaev spin liquid. The realization of Kitaev model necessitates the formation of J=1/2 pseudospins in the octahedral crystal field. We use Ru L3-edge resonant inelastic x-ray scattering to investigate the evolution of multiplet structures in RuX3. We identified quasi-elastic magnetic correlations and spin-orbit transitions to the J=3/2 states without discernible trigonal splitting, thereby validating the J=1/2 description of magnetism in the RuX3 family. Lineshape broadening in RuI3 provides evidence for its bulk metallicity in the vicinity of a bandwidth-controlled metal-insulator transition. Our results highlight the pivotal role of halogen p orbitals in controlling the electronic properties of RuX3.

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