Gauge-Invariant Perturbations in Hybrid Quantum Cosmology
Laura Castell\'o Gomar, Mercedes Mart\'in-Benito, and Guillermo A., Mena Marug\'an

TL;DR
This paper develops a covariant, gauge-invariant framework for quantizing cosmological perturbations in hybrid quantum cosmology, deriving effective equations for primordial fluctuations with quantum corrections.
Contribution
It introduces a covariant formalism for gauge-invariant perturbations in hybrid quantum cosmology, including a canonical Hamiltonian and effective evolution equations.
Findings
Derived a Hamiltonian for gauge-invariant perturbations.
Quantized the model using a hybrid approach preserving covariance.
Obtained effective equations with quantum corrections for primordial perturbations.
Abstract
We consider cosmological perturbations around homogeneous and isotropic spacetimes minimally coupled to a scalar field and present a formulation which is designed to preserve covariance. We truncate the action at quadratic perturbative order and particularize our analysis to flat compact spatial sections and a field potential given by a mass term, although the formalism can be extended to other topologies and potentials. The perturbations are described in terms of Mukhanov-Sasaki gauge invariants, linear perturbative constraints, and variables canonically conjugate to them. This set is completed into a canonical one for the entire system, including the homogeneous degrees of freedom. We find the global Hamiltonian constraint of the model, in which the contribution of the homogeneous sector is corrected with a term quadratic in the perturbations, that can be identified as the…
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