Boosting Gravity-Induced Entanglement through Parametric Resonance

Fuente: arXiv
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Main Authors: Shiomatsu, Yuka, Kaku, Youka, Matsumura, Akira, Fujita, Tomohiro
Format: Preprint
Published: 2025
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author Shiomatsu, Yuka
Kaku, Youka
Matsumura, Akira
Fujita, Tomohiro
author_facet Shiomatsu, Yuka
Kaku, Youka
Matsumura, Akira
Fujita, Tomohiro
contents Establishing quantum gravity theory remains one of the major challenges in modern physics, as the lack of experimental evidence makes it difficult to explore. In response to this challenge, proposals to test quantum entanglement induced by Newtonian gravity in table-top experiments have attracted significant attention as a potentially feasible approach far below the Planck energy scale. In this work, we propose a scheme to amplify gravity-induced entanglement between two masses using parametric resonance. Specifically, we consider two parametrically resonant oscillators interacting through Newtonian gravity, each governed by the Mathieu equation. We analyzed the logarithmic negativity between two oscillators and investigate the effects of random force noise and linear damping. As a result, we find an exponential growth of gravity-induced entanglement between the oscillators, which reflects the dynamical instability of parametric resonant systems.
format Preprint
id arxiv_https___arxiv_org_abs_2511_09169
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Boosting Gravity-Induced Entanglement through Parametric Resonance
Shiomatsu, Yuka
Kaku, Youka
Matsumura, Akira
Fujita, Tomohiro
General Relativity and Quantum Cosmology
Quantum Physics
Establishing quantum gravity theory remains one of the major challenges in modern physics, as the lack of experimental evidence makes it difficult to explore. In response to this challenge, proposals to test quantum entanglement induced by Newtonian gravity in table-top experiments have attracted significant attention as a potentially feasible approach far below the Planck energy scale. In this work, we propose a scheme to amplify gravity-induced entanglement between two masses using parametric resonance. Specifically, we consider two parametrically resonant oscillators interacting through Newtonian gravity, each governed by the Mathieu equation. We analyzed the logarithmic negativity between two oscillators and investigate the effects of random force noise and linear damping. As a result, we find an exponential growth of gravity-induced entanglement between the oscillators, which reflects the dynamical instability of parametric resonant systems.
title Boosting Gravity-Induced Entanglement through Parametric Resonance
topic General Relativity and Quantum Cosmology
Quantum Physics
url https://arxiv.org/abs/2511.09169