Multipartite entanglement from ditstrings for 1+1D systems

Fuente: arXiv
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Main Authors: Ozzello, Zane, Meurice, Yannick
Format: Preprint
Published: 2025
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author Ozzello, Zane
Meurice, Yannick
author_facet Ozzello, Zane
Meurice, Yannick
contents We show that multipartite entanglement can be used as an efficient way of identifying the critical points of 1+1D systems. We demonstrate this with the quantum Ising model, lattice $λϕ^4$ approximated with qutrits, and arrays of Rydberg atoms. To do so we make use of multipartite compositions of entanglement quantities for different parts combined to form the strong subadditivity, weak monotonicity, and a convex combination of these with conformal properties. These quantities display some remarkable properties. We will demonstrate how the entanglement of individual parts together displays behavior at phase boundaries, but the combination of these in the aforementioned quantities sharpens and localizes this behavior to the boundaries even better. We will show that we can extend a scheme for approximating the entanglement with the mutual information, and that this acts as a lower bound which will also follow the changes in the entanglement for the above quantities, despite the additional contributions of different signs. This mutual information approximation to the identifying quantities can have its lower probabilities removed in a process we call filtering, and despite the combination of terms will respond well to the filtering and offer improvements to the lower bound.
format Preprint
id arxiv_https___arxiv_org_abs_2507_14422
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Multipartite entanglement from ditstrings for 1+1D systems
Ozzello, Zane
Meurice, Yannick
Quantum Physics
High Energy Physics - Lattice
High Energy Physics - Theory
We show that multipartite entanglement can be used as an efficient way of identifying the critical points of 1+1D systems. We demonstrate this with the quantum Ising model, lattice $λϕ^4$ approximated with qutrits, and arrays of Rydberg atoms. To do so we make use of multipartite compositions of entanglement quantities for different parts combined to form the strong subadditivity, weak monotonicity, and a convex combination of these with conformal properties. These quantities display some remarkable properties. We will demonstrate how the entanglement of individual parts together displays behavior at phase boundaries, but the combination of these in the aforementioned quantities sharpens and localizes this behavior to the boundaries even better. We will show that we can extend a scheme for approximating the entanglement with the mutual information, and that this acts as a lower bound which will also follow the changes in the entanglement for the above quantities, despite the additional contributions of different signs. This mutual information approximation to the identifying quantities can have its lower probabilities removed in a process we call filtering, and despite the combination of terms will respond well to the filtering and offer improvements to the lower bound.
title Multipartite entanglement from ditstrings for 1+1D systems
topic Quantum Physics
High Energy Physics - Lattice
High Energy Physics - Theory
url https://arxiv.org/abs/2507.14422