Particle Genesis from the Horizon Code: Thresholds, Spin Emergence, and the Neutrino as a Partial-Lock Case
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| Format: | Recurso digital |
| Langue: | anglais |
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Zenodo
2025
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| _version_ | 1866902008607277056 |
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| author | Keraitis, Giedrius |
| author_facet | Keraitis, Giedrius |
| contents | <p>This work develops a mathematics-first framework where elementary particles, spin, and vacuum structure emerge from informational and horizon principles. The central idea is that particle activation thresholds are governed by a universal horizon-bit energy scale. This provides a unified explanation for why photons and gluons remain massless, how W and Z acquire mass in a collective way, why fermions obey four-pi periodicity, and why neutrinos have small but nonzero masses without introducing new fields.</p> <p>The construction is internally consistent, preserves all local tests of general relativity, and treats the cosmological vacuum as principle-locked to the Hubble rate. Beyond technical proofs, the text includes plain-language explanations of each result. The aim is to offer a coherent and logically closed account of particle genesis and spin emergence, serving as a foundation for further theoretical and empirical exploration.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_17155676 |
| institution | Zenodo |
| language | eng |
| publishDate | 2025 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | Particle Genesis from the Horizon Code: Thresholds, Spin Emergence, and the Neutrino as a Partial-Lock Case Keraitis, Giedrius Horizon thermodynamics, Information theory, Emergent particles, Spin and holonomy, Neutrino masses, Electroweak symmetry, Vacuum energy, FRW cosmology, Gauge invariance, Mathematical physics <p>This work develops a mathematics-first framework where elementary particles, spin, and vacuum structure emerge from informational and horizon principles. The central idea is that particle activation thresholds are governed by a universal horizon-bit energy scale. This provides a unified explanation for why photons and gluons remain massless, how W and Z acquire mass in a collective way, why fermions obey four-pi periodicity, and why neutrinos have small but nonzero masses without introducing new fields.</p> <p>The construction is internally consistent, preserves all local tests of general relativity, and treats the cosmological vacuum as principle-locked to the Hubble rate. Beyond technical proofs, the text includes plain-language explanations of each result. The aim is to offer a coherent and logically closed account of particle genesis and spin emergence, serving as a foundation for further theoretical and empirical exploration.</p> |
| title | Particle Genesis from the Horizon Code: Thresholds, Spin Emergence, and the Neutrino as a Partial-Lock Case |
| topic | Horizon thermodynamics, Information theory, Emergent particles, Spin and holonomy, Neutrino masses, Electroweak symmetry, Vacuum energy, FRW cosmology, Gauge invariance, Mathematical physics |
| url | https://doi.org/10.5281/zenodo.17155676 |