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October 20, 20250 citationsOpen Access

Chiral Symmetries and Multiparticle Entanglement

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SDSophia DenkerSISatoya ImaiOGOtfried Gühne

Key Points

  • Chiral symmetries lead to extremal forms of quantum entanglement in multiparticle systems.
  • Subspaces with chiral symmetries are shown to have high geometric measure of entanglement.
  • The study introduces a method for identifying genuine multipartite entangled states across three-particle systems.
  • Results indicate potential applications for observables derived from these entangled states.

Abstract

Bosons and fermions are defined by their exchange properties and the underlying symmetries determine the structure of the corresponding state spaces. For two particles there are two possible exchange symmetries, resulting in symmetric or antisymmetric behaviour, but when exploring multiparticle systems also quantum states with chiral symmetries appear. In this work we demonstrate that chiral symmetries lead to extremal forms of quantum entanglement. More precisely, we show that subspaces with this symmetry are highly entangled with respect to the geometric measure of entanglement, leading to observables which can be useful for entanglement characterization. Along the way, we develop a simple method to solve the problem of genuine multiparticle entanglement for unitarily invariant three-particle states and use it to identify genuine multipartite entangled states whose partial transposes with respect to all bipartitions are positive. Finally, we consider generalizations with less symmetry and discuss potential applications.

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Cite This Study

Denker et al. (2025) studied this question.

synapsesocial.com/papers/68f6379bb481a140a36cf81fhttps://doi.org/10.48550/arxiv.2506.15609
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