Genericness of quantum damping of cosmological shear in modified loop quantum cosmology

Fuente: arXiv
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Autori principali: Gan, Wen-Cong, Graef, Leila L., Ramos, Rudnei O., Vicente, Gustavo S., Wang, Anzhong
Natura: Preprint
Pubblicazione: 2026
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author Gan, Wen-Cong
Graef, Leila L.
Ramos, Rudnei O.
Vicente, Gustavo S.
Wang, Anzhong
author_facet Gan, Wen-Cong
Graef, Leila L.
Ramos, Rudnei O.
Vicente, Gustavo S.
Wang, Anzhong
contents In arXiv:2603.18175, the authors argue, based on numerical studies of particular cases, that the quantum damping of cosmological shear in a modified loop quantum cosmological model (mLQC-I) that was recently found in arXiv:2510.14021 is not generic and that the universe never becomes truly classical. In this brief Note, we revisit these claims by carefully examining the underlying assumptions and the class of initial conditions considered. We show that the examples analyzed in arXiv:2603.18175 correspond to configurations that do not represent physically admissible collapsing Bianchi I universes, as they involve mixed expanding-contracting directions and lead to effectively lower-dimensional post-bounce geometries. Restricting to physically relevant initial conditions corresponding to genuine three-dimensional contraction, we find that the quantum damping of cosmological shear is a robust dynamical feature. This conclusion is supported by both numerical and perturbative analyses, which demonstrate that the post-bounce evolution admits an isotropic attractor, with anisotropies decaying exponentially and independently of the matter content, provided that the weak energy condition is satisfied. We further outline a plausible post-bounce mechanism for the onset of classicalization.
format Preprint
id arxiv_https___arxiv_org_abs_2604_08912
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Genericness of quantum damping of cosmological shear in modified loop quantum cosmology
Gan, Wen-Cong
Graef, Leila L.
Ramos, Rudnei O.
Vicente, Gustavo S.
Wang, Anzhong
General Relativity and Quantum Cosmology
Cosmology and Nongalactic Astrophysics
High Energy Physics - Phenomenology
High Energy Physics - Theory
In arXiv:2603.18175, the authors argue, based on numerical studies of particular cases, that the quantum damping of cosmological shear in a modified loop quantum cosmological model (mLQC-I) that was recently found in arXiv:2510.14021 is not generic and that the universe never becomes truly classical. In this brief Note, we revisit these claims by carefully examining the underlying assumptions and the class of initial conditions considered. We show that the examples analyzed in arXiv:2603.18175 correspond to configurations that do not represent physically admissible collapsing Bianchi I universes, as they involve mixed expanding-contracting directions and lead to effectively lower-dimensional post-bounce geometries. Restricting to physically relevant initial conditions corresponding to genuine three-dimensional contraction, we find that the quantum damping of cosmological shear is a robust dynamical feature. This conclusion is supported by both numerical and perturbative analyses, which demonstrate that the post-bounce evolution admits an isotropic attractor, with anisotropies decaying exponentially and independently of the matter content, provided that the weak energy condition is satisfied. We further outline a plausible post-bounce mechanism for the onset of classicalization.
title Genericness of quantum damping of cosmological shear in modified loop quantum cosmology
topic General Relativity and Quantum Cosmology
Cosmology and Nongalactic Astrophysics
High Energy Physics - Phenomenology
High Energy Physics - Theory
url https://arxiv.org/abs/2604.08912