Quantum Circuits for High-Dimensional Absolutely Maximally Entangled States

Fuente: arXiv
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Autori principali: Casas, Berta, Rajchel-Mieldzioć, Grzegorz, Rather, Suhail Ahmad, Płodzień, Marcin, Bruzda, Wojciech, Cervera-Lierta, Alba, Życzkowski, Karol
Natura: Preprint
Pubblicazione: 2025
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author Casas, Berta
Rajchel-Mieldzioć, Grzegorz
Rather, Suhail Ahmad
Płodzień, Marcin
Bruzda, Wojciech
Cervera-Lierta, Alba
Życzkowski, Karol
author_facet Casas, Berta
Rajchel-Mieldzioć, Grzegorz
Rather, Suhail Ahmad
Płodzień, Marcin
Bruzda, Wojciech
Cervera-Lierta, Alba
Życzkowski, Karol
contents Absolutely maximally entangled (AME) states of multipartite quantum systems exhibit maximal entanglement across all possible bipartitions. These states lead to teleportation protocols that surpass standard teleportation schemes, determine quantum error correction codes and can be used to test performance of current term quantum processors. Several AME states can be constructed from graph states using minimal quantum resources. However, there exist other constructions that depart from the stabilizer formalism. In this work, we present explicit quantum circuits to generate exemplary non-stabilizer AME states of four subsystems with four, six, and eight levels each and analyze their capabilities to perform quantum information tasks.
format Preprint
id arxiv_https___arxiv_org_abs_2504_05394
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Quantum Circuits for High-Dimensional Absolutely Maximally Entangled States
Casas, Berta
Rajchel-Mieldzioć, Grzegorz
Rather, Suhail Ahmad
Płodzień, Marcin
Bruzda, Wojciech
Cervera-Lierta, Alba
Życzkowski, Karol
Quantum Physics
Absolutely maximally entangled (AME) states of multipartite quantum systems exhibit maximal entanglement across all possible bipartitions. These states lead to teleportation protocols that surpass standard teleportation schemes, determine quantum error correction codes and can be used to test performance of current term quantum processors. Several AME states can be constructed from graph states using minimal quantum resources. However, there exist other constructions that depart from the stabilizer formalism. In this work, we present explicit quantum circuits to generate exemplary non-stabilizer AME states of four subsystems with four, six, and eight levels each and analyze their capabilities to perform quantum information tasks.
title Quantum Circuits for High-Dimensional Absolutely Maximally Entangled States
topic Quantum Physics
url https://arxiv.org/abs/2504.05394