Transforming graph states via Bell state measurements

Fuente: arXiv
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Main Authors: Löbl, Matthias C., Pettersson, Love A., Paesani, Stefano, Sørensen, Anders S.
Format: Preprint
Published: 2024
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author Löbl, Matthias C.
Pettersson, Love A.
Paesani, Stefano
Sørensen, Anders S.
author_facet Löbl, Matthias C.
Pettersson, Love A.
Paesani, Stefano
Sørensen, Anders S.
contents Graph states are key resources for measurement-based quantum computing, which is particularly promising for photonic systems. Fusions are probabilistic Bell state measurements, measuring pairs of parity operators of two qubits. Fusions can be used to connect/entangle different graph states, making them a powerful resource for measurement-based and related fusion-based quantum computing. There are several different graph structures and types of Bell state measurements, yet the associated graph transformations have only been analyzed for specific cases. Here, we provide a full set of graph transformation rules and give an intuitive visualization based on Venn diagrams of local neighborhoods of graph nodes. We derive these graph transformations for all types of rotated type-II fusion, showing that there are five different fusion success cases. Finally, we give application examples of the derived graph transformation rules and show that they can be used to construct graph codes or simulate fusion networks.
format Preprint
id arxiv_https___arxiv_org_abs_2405_02414
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Transforming graph states via Bell state measurements
Löbl, Matthias C.
Pettersson, Love A.
Paesani, Stefano
Sørensen, Anders S.
Quantum Physics
Graph states are key resources for measurement-based quantum computing, which is particularly promising for photonic systems. Fusions are probabilistic Bell state measurements, measuring pairs of parity operators of two qubits. Fusions can be used to connect/entangle different graph states, making them a powerful resource for measurement-based and related fusion-based quantum computing. There are several different graph structures and types of Bell state measurements, yet the associated graph transformations have only been analyzed for specific cases. Here, we provide a full set of graph transformation rules and give an intuitive visualization based on Venn diagrams of local neighborhoods of graph nodes. We derive these graph transformations for all types of rotated type-II fusion, showing that there are five different fusion success cases. Finally, we give application examples of the derived graph transformation rules and show that they can be used to construct graph codes or simulate fusion networks.
title Transforming graph states via Bell state measurements
topic Quantum Physics
url https://arxiv.org/abs/2405.02414