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.
Authors
- María José Monteagudo Candiani (ORCID: https://orcid.org/0009-0006-2693-3476)
Institutions
- Sapienza University of Rome (IT)
Publication Details
- Journal
- Zenodo (CERN European Organization for Nuclear Research)
- Published
- 2026-10-04
- DOI
- https://doi.org/10.5281/zenodo.23127960
- Primary Topic
- Dark Matter and Cosmic Phenomena
- Type
- preprint