Approximating Entanglement Based on Abstract Interpretation

Fuente: arXiv
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Main Authors: Raahauge, Aske Nord, Marchioro, Martin Bom, Nylandsted, Rasmus Ross
Format: Preprint
Published: 2025
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author Raahauge, Aske Nord
Marchioro, Martin Bom
Nylandsted, Rasmus Ross
author_facet Raahauge, Aske Nord
Marchioro, Martin Bom
Nylandsted, Rasmus Ross
contents Entanglement is a fundamental property of quantum systems, essential for non-trivial quantum programs. Identifying when qubits become entangled is critical for circuit optimization, and for arguing for the correctness of quantum algorithms. This paper presents a static analysis method for approximating entanglement by extending an already existing abstract interpretation, thus avoiding the exponential slowdown of an exact analysis. The approach is shown to be sound and an implementation is provided in Standard ML with linear-time scalability.
format Preprint
id arxiv_https___arxiv_org_abs_2508_10056
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Approximating Entanglement Based on Abstract Interpretation
Raahauge, Aske Nord
Marchioro, Martin Bom
Nylandsted, Rasmus Ross
Quantum Physics
Emerging Technologies
81P42
Entanglement is a fundamental property of quantum systems, essential for non-trivial quantum programs. Identifying when qubits become entangled is critical for circuit optimization, and for arguing for the correctness of quantum algorithms. This paper presents a static analysis method for approximating entanglement by extending an already existing abstract interpretation, thus avoiding the exponential slowdown of an exact analysis. The approach is shown to be sound and an implementation is provided in Standard ML with linear-time scalability.
title Approximating Entanglement Based on Abstract Interpretation
topic Quantum Physics
Emerging Technologies
81P42
url https://arxiv.org/abs/2508.10056