Diffusive Excitonic Bands from Frustrated Triangular Sublattice in a Singlet-Ground-State System
Bin Gao, Tong Chen, Xiao-Chuan Wu, Michael Flynn, Chunruo Duan, Lebing, Chen, Chien-Lung Huang, Jesse Liebman, Shuyi Li, Feng Ye, Matthew B. Stone,, Andrey Podlesnyak, Douglas L. Abernathy, Devashibhai T. Adroja, Manh Duc Le,, Qingzhen Huang, Andriy H. Nevidomskyy

TL;DR
This study reveals that in a frustrated triangular lattice system with singlet ground states, spin excitons can exhibit dispersive, diffusive excitations regardless of magnetic order, highlighting the role of frustration and entanglement.
Contribution
It demonstrates dispersive spin excitons in a triangular lattice with singlet ground states, challenging the typical non-dispersive nature of such excitations.
Findings
Dispersive spin excitons form around the Brillouin zone boundary.
Long-range magnetic order coexists with dispersive excitons.
Spin entanglement and frustration likely cause the dispersive behavior.
Abstract
Magnetic order in most materials occurs when magnetic ions with finite moments in a crystalline lattice arrange in a particular pattern below the ordering temperature determined by exchange interactions between the ions. However, when the crystal electric field (CEF) effect results in a spin-singlet ground state on individual magnetic sites, the collective ground state of the system can either remain non-magnetic, or more intriguingly, the exchange interactions between neighboring ions, provided they are sufficiently strong, can admix the excited CEF levels, resulting in a magnetically ordered ground state. The collective magnetic excitations in such a state are so-called spin excitons that describe the CEF transitions propagating through the lattice. In most cases, spin excitons originating from CEF levels of a localized single ion are dispersion-less in momentum (reciprocal) space and…
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Taxonomy
TopicsAdvanced Condensed Matter Physics · Multiferroics and related materials · Magnetic and transport properties of perovskites and related materials
