期刊论文详细信息
Octupolar order and Ising quantum criticality tuned by strain and dimensionality: Application to d-orbital Mott insulators
Article
关键词: HIDDEN ORDER;    PHASE;    BREAKING;   
DOI  :  10.1103/PhysRevB.104.174431
来源: SCIE
【 摘 要 】

Recent experiments have discovered multipolar orders in a variety of d-orbital Mott insulators. Motivated by uncovering the exchange interactions which underlie octupolar order proposed in osmate double perovskites, we study a two-site model using exact diagonalization on a five-orbital Hamiltonian, incorporating spin-orbit coupling and interactions, and including both intraorbital and interorbital hopping. Using an exact SchriefferWolff transformation, we then extract an effective pseudospin Hamiltonian for the non-Kramers doublets, uncovering dominant ferrooctupolar coupling driven by the interplay of two distinct intraorbital hopping terms. Using classical Monte Carlo simulations on the face-centered cubic lattice, we obtain a ferrooctupolar transition temperature which is in good agreement with experiments on osmate double perovskites. We also explore the impact of uniaxial strain and dimensional tuning via ultrathin films, which are shown to induce a transverse field on the Ising octupolar order. This suppresses Tc and potentially allows one to access octupolar Ising quantum critical points. We discuss possible implications of our results for a broader class of materials which may host such non-Kramers doublet ions.

【 授权许可】

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