Extraction of interaction parameters for $alpha extrm {-}{ m rucl}_3$ from neutron data using machine learning

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SUMMARY

    Highly frustrated quantum systems are important routes to realizing exotic ground_states and excitations. The Kitaev model is a spin network with competing bond-dependent interactions and hosts a topological QSL ground_state that supports two types of fractionalized excitations: visons, which are excitations of the emergent flux, and deconfined Majorana fermions. Meanwhile, however, the experimental situation regarding the quasiparticles in α-RuCl3 remains inconclusive primarily due to difficulties in determining the precise nature of the spin couplings in the material and to what extent these destabilize the QSL state in zero and applied magnetic_fields. At low . . .

     

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