Extra Dimensions, Exotic Matter like 17MeV and Dark Matter Triple String Framework

Extra Dimensions, Exotic Matter like 17 MeV and Dark Matter Triple String Framework introduces a unified theoretical model connecting extra-dimensional geometry, exotic matter, dark-sector resonances, and cosmological anomalies. The framework is built on a binary SU(2)–CP²–SU(3) triad stabilized by Maxwell’s demon and governed by complex β‑function flows. It integrates Pauli exclusion, Migdal rearrangements, Zeno dynamics, CP violation, holographic projection, and Kaluza–Klein elliptic tubes into a single geometric engine capable of generating WIMP-like modes, wormhole-like exclusion zones, and 17 MeV resonances. The work proposes the Triple String Theory, consisting of three vibrational sectors (open, closed, and exotic Type‑C strings) whose flows meet at a triple point where β₁ = β₂ = β₃ = 0. Extra dimensions are treated as dynamically generated informational structures encoded in CP² and sculpted by demon-filtered UV/IR helices. The QuantumClock Beta Flow provides a mechanism for extra-dimensional creation and stabilization, while a coset–memory operator unifies SU(2) gauge fields, gravitational memory effects, axions, X17-like excitations, and Hawking-like radiation. The preprint includes 21 analogue simulations, ranging from MERA‑based triadic dynamics to CP² helices, WIMP condensation, 17 MeV topological resonances, and a final simulation of the exotic quantum vacuum under coset–memory deformation. Simulation 21 demonstrates that the vacuum is non-invariant, carrying soft‑hair imprints and memory signatures that act as the geometric origin of Type‑C dark matter and extra-dimensional projection. This work provides a mathematically coherent and experimentally accessible approach to exotic matter and extra dimensions, offering potential explanations for the 21 cm anomaly, the lithium problem, helium abundance deviations, and electroweak-scale anisotropies. It includes conceptual code for Google Colab, a full simulation table, and a proposed microfluidic implementation for future laboratory validation.

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Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-10-04
DOI
https://doi.org/10.5281/zenodo.23127961
Primary Topic
Dark Matter and Cosmic Phenomena
Type
preprint
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preprint

Extra Dimensions, Exotic Matter like 17MeV and Dark Matter Triple String Framework

María José Monteagudo Candiani
Zenodo (CERN European Organization for Nuclear Research)
Dark Matter and Cosmic Phenomena
preprint

Extra Dimensions, Exotic Matter like 17MeV and Dark Matter Triple String Framework

María José Monteagudo Candiani
preprint en

Abstract

Extra Dimensions, Exotic Matter like 17 MeV and Dark Matter Triple String Framework introduces a unified theoretical model connecting extra-dimensional geometry, exotic matter, dark-sector resonances, and cosmological anomalies. The framework is built on a binary SU(2)–CP²–SU(3) triad stabilized by Maxwell’s demon and governed by complex β‑function flows. It integrates Pauli exclusion, Migdal rearrangements, Zeno dynamics, CP violation, holographic projection, and Kaluza–Klein elliptic tubes into a single geometric engine capable of generating WIMP-like modes, wormhole-like exclusion zones, and 17 MeV resonances. The work proposes the Triple String Theory, consisting of three vibrational sectors (open, closed, and exotic Type‑C strings) whose flows meet at a triple point where β₁ = β₂ = β₃ = 0. Extra dimensions are treated as dynamically generated informational structures encoded in CP² and sculpted by demon-filtered UV/IR helices. The QuantumClock Beta Flow provides a mechanism for extra-dimensional creation and stabilization, while a coset–memory operator unifies SU(2) gauge fields, gravitational memory effects, axions, X17-like excitations, and Hawking-like radiation. The preprint includes 21 analogue simulations, ranging from MERA‑based triadic dynamics to CP² helices, WIMP condensation, 17 MeV topological resonances, and a final simulation of the exotic quantum vacuum under coset–memory deformation. Simulation 21 demonstrates that the vacuum is non-invariant, carrying soft‑hair imprints and memory signatures that act as the geometric origin of Type‑C dark matter and extra-dimensional projection. This work provides a mathematically coherent and experimentally accessible approach to exotic matter and extra dimensions, offering potential explanations for the 21 cm anomaly, the lithium problem, helium abundance deviations, and electroweak-scale anisotropies. It includes conceptual code for Google Colab, a full simulation table, and a proposed microfluidic implementation for future laboratory validation.

Zenodo (CERN European Organization for Nuclear Research)
Sapienza University of Rome (IT)
Dark Matter and Cosmic Phenomena
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