Entanglement without Quantum Mechanics: Operational Constraints on the Quantum Signature

Fuente: arXiv
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Main Authors: Schlegel, Samuel, Dakić, Borivoje, Del Santo, Flavio
Format: Preprint
Published: 2025
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author Schlegel, Samuel
Dakić, Borivoje
Del Santo, Flavio
author_facet Schlegel, Samuel
Dakić, Borivoje
Del Santo, Flavio
contents Entanglement is often regarded as an inherently quantum feature. We show that this does not have to be the case: under restricted operational access, classical correlations can appear nonseparable when expressed in the formalism of quantum mechanics. If an observer is limited to a constrained set of measurements and transformations, certain classical phase-space distributions can mimic entanglement-like behaviours. Imposing positivity of the associated Hilbert space operator as a physicality requirement removes some of these representational artifacts, revealing a regime in which nonseparability is genuine but still reproducible by classical models. Only when the operational restrictions on the observer are lifted further--allowing operational tests of measurement incompatibility or other nonclassical signatures--does one obtain entanglement that can no longer be captured by any classical description. This operational hierarchy distinguishes classical artifacts, classically reproducible nonseparability, and genuine entanglement.
format Preprint
id arxiv_https___arxiv_org_abs_2512_14834
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Entanglement without Quantum Mechanics: Operational Constraints on the Quantum Signature
Schlegel, Samuel
Dakić, Borivoje
Del Santo, Flavio
Quantum Physics
Entanglement is often regarded as an inherently quantum feature. We show that this does not have to be the case: under restricted operational access, classical correlations can appear nonseparable when expressed in the formalism of quantum mechanics. If an observer is limited to a constrained set of measurements and transformations, certain classical phase-space distributions can mimic entanglement-like behaviours. Imposing positivity of the associated Hilbert space operator as a physicality requirement removes some of these representational artifacts, revealing a regime in which nonseparability is genuine but still reproducible by classical models. Only when the operational restrictions on the observer are lifted further--allowing operational tests of measurement incompatibility or other nonclassical signatures--does one obtain entanglement that can no longer be captured by any classical description. This operational hierarchy distinguishes classical artifacts, classically reproducible nonseparability, and genuine entanglement.
title Entanglement without Quantum Mechanics: Operational Constraints on the Quantum Signature
topic Quantum Physics
url https://arxiv.org/abs/2512.14834