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Quantum field theory, gravity and cosmology in a fractal universe

3 Pith papers cite this work. Polarity classification is still indexing.

3 Pith papers citing it
abstract

We propose a model for a power-counting renormalizable field theory living in a fractal spacetime. The action is Lorentz covariant and equipped with a Stieltjes measure. The system flows, even in a classical sense, from an ultraviolet regime where spacetime has Hausdorff dimension 2 to an infrared limit coinciding with a standard $D$-dimensional field theory. We discuss the properties of a scalar field model at classical and quantum level. Classically, the field lives on a fractal which exchanges energy-momentum with the bulk of integer topological dimension D. Although an observer experiences dissipation, the total energy-momentum is conserved. The field spectrum is a continuum of massive modes. The gravitational sector and Einstein equations are discussed in detail, also on cosmological backgrounds. We find ultraviolet cosmological solutions and comment on their implications for the early universe.

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gr-qc 2 hep-th 1

years

2026 3

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UNVERDICTED 3

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background 2

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background 1 support 1

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Cosmology of fractional gravity

gr-qc · 2026-04-30 · unverdicted · novelty 7.0

Fractional gravity yields stable de Sitter expansion and exact bouncing solutions driven by phantom (w < -1) or ghost (negative energy) fluids, with results independent of the form-factor representation.

Minimal Proper-time in Quantum Field Theory

hep-th · 2026-01-19 · unverdicted · novelty 6.0

A minimal proper time τ_min is introduced into QFT to suppress high-energy modes, achieve asymptotic safety via dimensional reduction, and allow a deterministic regime near the Planck scale.

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