arXiv · 2510.14021
Quantum Damping of Cosmological Shear: A New Prediction from Loop Quantum Cosmologies
Abstract
We study the dynamics of the Bianchi I universe in modified loop quantum cosmology (mLQC-I) and uncover a robust mechanism for isotropization: the shear is dynamically suppressed after the bounce and decays rapidly in the quantum post-bounce regime, independently of the equation of state of standard matter sources. This naturally drives the Universe toward a homogeneous and isotropic expanding phase without fine-tuning. Our results show that mLQC-I provides a new quantum-gravitational mechanism for suppressing anisotropies, absent in other bounce models.
Explore related subjects
Keep this discovery
Wen-Cong Gan, Leila L. Graef, Rudnei O. Ramos, Gustavo S. Vicente, Anzhong Wang. 2025-10-15. Quantum Damping of Cosmological Shear: A New Prediction from Loop Quantum Cosmologies. https://doi.org/10.1103/f8tr-bq61
Cite the original work for its findings. Save a collection to share your selection of sources.