Critical Analysis of HL-LHC Safety at 14 TeV: Impossibility of Cosmic Analogues, Kinematic Asymmetry, Unverified Hawking Radiation and Vacuum Phase Transition Risk in Geometric Topology 14D

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Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-16
DOI
https://doi.org/10.5281/zenodo.22790318
Primary Topic
Particle physics theoretical and experimental studies
Type
article
Field-Weighted Citation Impact
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article

Critical Analysis of HL-LHC Safety at 14 TeV: Impossibility of Cosmic Analogues, Kinematic Asymmetry, Unverified Hawking Radiation and Vacuum Phase Transition Risk in Geometric Topology 14D

Jorge Luiz Silva de Barcellos
Zenodo (CERN European Organization for Nuclear Research)
Particle physics theoretical and experimental studies
article

Critical Analysis of HL-LHC Safety at 14 TeV: Impossibility of Cosmic Analogues, Kinematic Asymmetry, Unverified Hawking Radiation and Vacuum Phase Transition Risk in Geometric Topology 14D

Jorge Luiz Silva de Barcellos
article en

Abstract

This paper provides a rigorous critical analysis of the official LHC safety arguments (LSAG 2008) in light of Geometric Topology 14D (TG). We demonstrate that the three main pillars of the LSAG report — cosmic ray analogies, Hawking radiation, and QCD vacuum stability — are unsustainable when subjected to kinematic, thermodynamic, and epistemological scrutiny. Key results include: (1) qualitative kinematic asymmetry between fixed-target cosmic collisions and head-on symmetric LHC collisions, making Earth capture possible only in the latter; (2) the unverified and theoretically problematic nature of Hawking radiation; (3) local energy density at 14 TeV (~4.18 × 10^{50} Pa) vastly exceeding neutron star collapse pressures; and (4) a predicted vacuum phase transition threshold at 13.7 TeV in the TG framework, leading to non-dissipative micro-singularities capable of planetary destruction via tidal and electrostatic accretion. This work is directly linked to the companion paper "Structural Deconstruction of the Schrödinger Equation and the Emergence of Light Speed from the Geometric Topology 14D Systolic Lattice" (Zenodo DOI: [insira o novo DOI após upload]), which supplies the foundational quantum derivations supporting the TG model. **Preprint — June 22, 2026**

Zenodo (CERN European Organization for Nuclear Research)
Openalex Percentile: Top 12%
Particle physics theoretical and experimental studies
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