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Observable quantum entanglement due to gravity

Physics

Observable quantum entanglement due to gravity

T. Krisnanda, G. Y. Tham, et al.

This groundbreaking research explores the thrilling possibility of observing quantum features of gravitational interaction by examining entanglement generation between massive objects. Conducted by Tanjung Krisnanda and team, the study delves into two innovative scenarios including harmonic potentials and released masses, revealing exciting implications for future experiments.... show more
Abstract
No experiment to date has provided evidence for quantum features of the gravitational interaction. Recently proposed tests suggest looking for the generation of quantum entanglement between massive objects as a possible route towards the observation of such features. Motivated by advances in optical cooling of mirrors, here we provide a systematic study of entanglement between two masses that are coupled gravitationally. We first consider the masses trapped at all times in harmonic potentials (optomechanics) and then the masses released from the traps. This leads to the estimate of the experimental parameters required for the observation of gravitationally induced entanglement. The optomechanical setup demands LIGO-like mirrors and squeezing or long coherence times, but the released masses can be light and accumulate detectable entanglement in a timescale shorter than their coherence times. No macroscopic quantum superposition develops during the evolution. We discuss the implications from such thought experiments regarding the nature of the gravitational coupling.
Publisher
npj Quantum Information
Published On
Jan 30, 2020
Authors
Tanjung Krisnanda, Guo Yao Tham, Mauro Paternostro, Tomasz Paterek
Tags
quantum features
gravitational interaction
entanglement generation
optomechanics
experimental parameters
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