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Information-theoretical analysis of topological entanglement entropy and multipartite correlations

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arxiv 1505.01917 v2 pith:BDZYHUKT submitted 2015-05-08 quant-ph

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keywords correlationsentanglemententropyinformation-theoreticalmeasuresmultipartiteorderedtopological
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A special feature of the ground state in a topologically ordered phase is the existence of large scale correlations depending only on the topology of the regions. These correlations can be detected by the topological entanglement entropy or by a measure called irreducible correlation. We show that these two measures coincide for states obeying an area law and having zero-correlation length. Moreover, we provide an operational meaning for these measures by proving its equivalence to the optimal rate of a particular class of secret sharing protocols. This establishes an information-theoretical approach to multipartite correlations in topologically ordered systems.

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  1. Multipartite entanglement characterizing topological phase transitions in holographic nodal line semimetals

    hep-th 2026-02 conditional novelty 5.0 of 10

    Tripartite entanglement measures in holographic nodal line semimetals vanish at long distance but decay with phase-dependent power laws that jump at the quantum critical point.

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