Entanglement detection via third-order local invariants from randomized measurements

Fuente: arXiv
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Hauptverfasser: Scala, Giovanni, Bera, Anindita, Sarbicki, Gniewomir
Format: Preprint
Veröffentlicht: 2025
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author Scala, Giovanni
Bera, Anindita
Sarbicki, Gniewomir
author_facet Scala, Giovanni
Bera, Anindita
Sarbicki, Gniewomir
contents We compute all third-order local invariants accessible via randomised measurements and employ them to derive separability criteria. The reconstruction of the invariants yields experimentally accessible entanglement criteria for multipartite states with arbitrary local dimensions. The results show that third-order invariants capture inter-subsystem correlations beyond second-order spectral criteria within more feasible entanglement detection protocols than full tomography. As an example, Werner states in $d=3$ the entanglement is detected for $p>\frac 12$ at the second-order correlations, and it is improved to $p>\frac 1{\sqrt[3]{10}}$ at the third-order.
format Preprint
id arxiv_https___arxiv_org_abs_2506_18303
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Entanglement detection via third-order local invariants from randomized measurements
Scala, Giovanni
Bera, Anindita
Sarbicki, Gniewomir
Quantum Physics
We compute all third-order local invariants accessible via randomised measurements and employ them to derive separability criteria. The reconstruction of the invariants yields experimentally accessible entanglement criteria for multipartite states with arbitrary local dimensions. The results show that third-order invariants capture inter-subsystem correlations beyond second-order spectral criteria within more feasible entanglement detection protocols than full tomography. As an example, Werner states in $d=3$ the entanglement is detected for $p>\frac 12$ at the second-order correlations, and it is improved to $p>\frac 1{\sqrt[3]{10}}$ at the third-order.
title Entanglement detection via third-order local invariants from randomized measurements
topic Quantum Physics
url https://arxiv.org/abs/2506.18303