Saved in:
Bibliographic Details
Main Authors: Ludescher, Stefan L., Loveridge, Leon D., Galley, Thomas D., Müller, Markus P.
Format: Preprint
Published: 2025
Subjects:
Online Access:https://arxiv.org/abs/2507.13201
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866909693306208256
author Ludescher, Stefan L.
Loveridge, Leon D.
Galley, Thomas D.
Müller, Markus P.
author_facet Ludescher, Stefan L.
Loveridge, Leon D.
Galley, Thomas D.
Müller, Markus P.
contents There has been a wave of recent interest in detecting the quantum nature of gravity with table-top experiments that witness gravitationally mediated entanglement. Central to these proposals is the assumption that any mediator capable of generating entanglement must itself be nonclassical. However, previous arguments for this have modelled classical mediators as finite, discrete systems such as bits, which excludes physically relevant continuous and infinite-dimensional systems such as those of classical mechanics and field theory. In this work, we close this gap by modelling classical systems as commutative unital C*-algebras, arguably encompassing all potentially physically relevant classical systems. We show that these systems cannot mediate entanglement between two quantum systems A and B, even if A and B are themselves infinite-dimensional or described by arbitrary unital C*-algebras (as in Quantum Field Theory), composed with an arbitrary C*-tensor product. This result reinforces the conclusion that the observation of gravity-induced entanglement would require the gravitational field to possess inherently non-classical features.
format Preprint
id arxiv_https___arxiv_org_abs_2507_13201
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Gravity-mediated entanglement via infinite-dimensional systems
Ludescher, Stefan L.
Loveridge, Leon D.
Galley, Thomas D.
Müller, Markus P.
Quantum Physics
General Relativity and Quantum Cosmology
There has been a wave of recent interest in detecting the quantum nature of gravity with table-top experiments that witness gravitationally mediated entanglement. Central to these proposals is the assumption that any mediator capable of generating entanglement must itself be nonclassical. However, previous arguments for this have modelled classical mediators as finite, discrete systems such as bits, which excludes physically relevant continuous and infinite-dimensional systems such as those of classical mechanics and field theory. In this work, we close this gap by modelling classical systems as commutative unital C*-algebras, arguably encompassing all potentially physically relevant classical systems. We show that these systems cannot mediate entanglement between two quantum systems A and B, even if A and B are themselves infinite-dimensional or described by arbitrary unital C*-algebras (as in Quantum Field Theory), composed with an arbitrary C*-tensor product. This result reinforces the conclusion that the observation of gravity-induced entanglement would require the gravitational field to possess inherently non-classical features.
title Gravity-mediated entanglement via infinite-dimensional systems
topic Quantum Physics
General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2507.13201