Proposed Ultraviolet Regularization and Asymptotic Behavior of the Semiclassical Wave Function of the Universe

We propose a non-linear, dimensionless matter-coupling ansatz to modify the semiclassical exponent of the de Sitter/Hawking-Hartle Wave Function of the Universe. By introducing a symmetric quadratic energy ratio x ≡ ⟨H_matter⟩/E_P regularized by a three-dimensional spatial exponent factor (1+x²)³, the construction guarantees dimensional invariance ([P²H²]=1), parity symmetry (x → -x) and exact recovery of the classical de Sitter vacuum state in the low-energy regime (x → 0). In the trans-Planckian limit (|x| → ∞) the argument of the exponential undergoes an asymptotic suppression of order O(x⁻⁶), causing the wave function amplitude to converge smoothly to a bounded upper limit (Ψ → 1). This provides a mathematically consistent heuristic model for ultraviolet (UV) damping of cosmological singularities without removing the explicit cosmological Hubble scale H.

Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-30
DOI
https://doi.org/10.5281/zenodo.23053758
Primary Topic
Cosmology and Gravitation Theories
Type
preprint
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preprint

Proposed Ultraviolet Regularization and Asymptotic Behavior of the Semiclassical Wave Function of the Universe

Andreia Castagna Ferreira
Zenodo (CERN European Organization for Nuclear Research)
Cosmology and Gravitation Theories
preprint

Proposed Ultraviolet Regularization and Asymptotic Behavior of the Semiclassical Wave Function of the Universe

Andreia Castagna Ferreira
preprint en

Abstract

We propose a non-linear, dimensionless matter-coupling ansatz to modify the semiclassical exponent of the de Sitter/Hawking-Hartle Wave Function of the Universe. By introducing a symmetric quadratic energy ratio x ≡ ⟨H_matter⟩/E_P regularized by a three-dimensional spatial exponent factor (1+x²)³, the construction guarantees dimensional invariance ([P²H²]=1), parity symmetry (x → -x) and exact recovery of the classical de Sitter vacuum state in the low-energy regime (x → 0). In the trans-Planckian limit (|x| → ∞) the argument of the exponential undergoes an asymptotic suppression of order O(x⁻⁶), causing the wave function amplitude to converge smoothly to a bounded upper limit (Ψ → 1). This provides a mathematically consistent heuristic model for ultraviolet (UV) damping of cosmological singularities without removing the explicit cosmological Hubble scale H.

Zenodo (CERN European Organization for Nuclear Research)
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Cosmology and Gravitation Theories
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