[3] viXra:2603.0140 [pdf] submitted on 2026-03-31 13:10:06
Authors: Yvan Raverdy
Comments: 3 Pages.
Here, we establish an equation for electron mass which depends on the age of the Universe T by combination between the result of our reference article [1] and Space time description [2], this equation is so depending on the four physical constants. That allows us to calculate T ; the numerical value obtained matches that deduced from the analysis of the cosmic microwave background (CMB) with a greater precision.
Category: High Energy Particle Physics
[2] viXra:2603.0052 [pdf] submitted on 2026-03-08 03:40:08
Authors: Ervin Goldfain
Comments: 15 Pages.
We derive the Renormalization Group (RG) behavior of non Abelian gauge theory under the assumption that spacetime has a scale dependent effective dimensional deviation in the deep ultraviolet (UV) and approaching zero in the infrared (IR). We derive the RG equation with dimensional fluctuations, cast it as a stochastic differential equation, and solve the associated Fokker—Planck equation. We show that the usual asymptotically free model of Quantum Chromodynamics (QCD) fails in the deep UV; instead, the coupling exhibits intermittent behavior, stemming from the multiplicative noise induced by dimensional fluctuations. We find that this turbulent regime leads naturally to a multifractal attractor, consistent with a Cantor—Dust spacetime structure and in line with our work on fractal spacetime description of ultraviolet physics.
Category: High Energy Particle Physics
[1] viXra:2603.0048 [pdf] submitted on 2026-03-08 15:26:55
Authors: Kozo Koizumi
Comments: 19 Pages.
We present an algebraic framework demonstrating that the spacetime manifold is an emergent structure from the field module rather than a pre-existing background. By employing a Clifford-valued gauge construction, we show that Minkowski spacetime is rigorously identified through the algebraic consistency of the field module network. In this framework, the spin connection is integrated as a dynamical messenger field on the same footing as the standard gauge bosons. Furthermore, this construction naturally leads to a Yang-Mills type gravity sector, which is known to be 1-loop renormalizable and asymptotically free, thereby providing a consistent UV completion. This framework offers a structural resolution to the cosmological constant problem by ensuring that vacuum energy does not contribute to the field equations, providing a consistent foundation for integrating quantum gravity with the Standard Model without an a priori manifold.
Category: High Energy Particle Physics