High Energy Particle Physics

2610 Submissions

[2] viXra:2610.0008 [pdf] submitted on 2026-10-02 20:58:54

The Mechanical Universe: Helical Spin Theory (HST) and Higgs-Tachyon-Push Field Theory (HTP)

Authors: Justin Mader
Comments: 25 Pages. (Note by viXra Admin: Please submit article written with AI assistance to ai.viXra.org)

This paper presents a consistent, mathematical-geometric framework describing quantum mechanics, gravitation, and cosmology within a "Bohmian" quantum field theory outside the standard model. By coupling a real helical sub-quantum domain (Helical Spin Theory, HST) with a space-filling background medium in a dynamic tachyonic momentum mode (Higgs-Tachyon-Push Field Theory, HTP), a quantitative reproduction of key astrophysical and quantum mechanical benchmark tests is achieved as an asymptotic limiting case within an absolute Euclidean reference frame. Gravitational light deflection, Mercury's perihelion precession, and the anomalous Pioneer Doppler drift are derived without invoking spacetime curvature via a spat-temporally Variable Speed of Light (VSL). On the microscopic scale, the double-slit paradox is formalized using an ontic, non-local pilot wave in line with De Broglie-Bohm mechanics. On the cosmological scale, the observed Hubble tension is mathematically resolved as a historical averaging effect derived from a degressive mass accumulation rate $Q_M(t)$. Furthermore, the empirical paradox of evanescent states in photon waveguides is interpreted through a media-mechanical phase transition into the superluminal tachyonic mode, while testable Lorentz invariance deviations are predicted for ultra-relativistic regimes. The model thus provides a closed mechanical framework that substitutes the requirements for Dark Matter, Dark Energy, and virtual particles within the macroscopic limit.Official preprint registered and priority-protected via CERN Open Science Repository Zenodo under DOI: 10.5281/zenodo.23088551.
Category: High Energy Particle Physics

[1] viXra:2610.0004 [pdf] submitted on 2026-10-01 12:45:48

Correct Interpretation of the Great Discoveries in Particle Physics: I. Reconsidering the Higgs Boson via Vedic Vortex Structure

Authors: Volodymyr Krasnoholovets
Comments: 15 Pages. This is the first paper in a series of three works.

This paper presents a deterministic, real-space reinterpretation of the 125 GeV particle discovered at the Large Hadron Collider (LHC) in 2012, commonly designated as the Higgs boson. Submicroscopic physics, developed within the framework of transparent mathematical physics in a series of the author’s previous works, allows us to bypass the complexities of physical mathematics and fine-tuning issues of the scalar Higgs field. Instead, the paper examines the 125 GeV resonance as a highly localised, ultrafast vortex formed by a frontal collision between a +e and -e integer-charged quark pair. This impact forces a massive compression of the discrete spatial lattice (tessellattice), trapping a colossal spatial mass defect (∆m∙c^2≅125 GeV). This dual-quark system forms an ultra-submicroscopic vortex with a radius of approximately 1.58 attometres, stabilised by this localised mass defect. Together with the Coulomb attraction, this structural confinement leads to the formation of a localised deformation coat around the vortex, whose geometric parameters are precisely balanced by the fine-structure constant α.
Category: High Energy Particle Physics