Decoherence of Cosmological Perturbations from Boundary Terms and the Non-Classicality of Gravity
Abstract
We note that the decoherence of inflationary curvature perturbation is dominated by a boundary term of the gravity action. Although this boundary term cannot affect cosmological correlators , it induces much faster decoherence for than that of previous calculations. The gravitational origin of inflationary decoherence sheds light on the quantum (or non-classical) nature of gravity. By comparing with a Schr\"odinger-Newton toy model of classical gravity, we show that gravity theories of classical or quantum origins can be distinguished by comparing their different impacts on decoherence rate of . Our calculation also indicates that density fluctuation better preserves quantum information than for the purpose of constructing cosmological Bell-like experiments.
Keywords
Cite
@article{arxiv.2207.04435,
title = {Decoherence of Cosmological Perturbations from Boundary Terms and the Non-Classicality of Gravity},
author = {Chon Man Sou and Duc Huy Tran and Yi Wang},
journal= {arXiv preprint arXiv:2207.04435},
year = {2023}
}
Comments
v3: 34 pages, 3 figures; typos corrected, references and figure added. Revised the part of UV and IR divergences. Match the JHEP version