The Hidden Mathematics to Unlock Eleven Dimensions Far and Beyond...

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Main Author: Mageed, Ismail A
Format: Recurso digital
Published: Zenodo 2026
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author Mageed, Ismail A
author_facet Mageed, Ismail A
contents <p class="MsoNormal"><span>The pursuit of a unified framework for quantum gravity has inevitably led theoretical physics to the mathematical richness of eleven-dimensional spacetime, the proposed domain of M-theory. This paper explores the hidden mathematical structures, ranging from non-linear algebraic realizations to generalized teleparallel geometries—that govern eleven dimensions and their infinite-component theories. By synthesizing disparate theoretical constructs such as Kac-Moody E11 symmetries, null structure groups, and complex brane intersections, we propose a comprehensive theoretical methodology named the M-Theoretic Mathematical Integrator (MTMI). This hypothetical computational framework is designed to benchmark and simulate the duality-equivalent field descriptions and topological central charges inherent in maximal supergravity models. Furthermore, this paper delineates pressing open problems and novel frontiers of phenomenal research, laying a structured foundation for future explorations into the high-energy regimes of eleven dimensions and beyond.</span></p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_19682591
institution Zenodo
language
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle The Hidden Mathematics to Unlock Eleven Dimensions Far and Beyond...
Mageed, Ismail A
M-theory
Eleven Dimensions
Supergravity
E11 Superalgebra
Teleparallel Superspace
Generalized Geometry
<p class="MsoNormal"><span>The pursuit of a unified framework for quantum gravity has inevitably led theoretical physics to the mathematical richness of eleven-dimensional spacetime, the proposed domain of M-theory. This paper explores the hidden mathematical structures, ranging from non-linear algebraic realizations to generalized teleparallel geometries—that govern eleven dimensions and their infinite-component theories. By synthesizing disparate theoretical constructs such as Kac-Moody E11 symmetries, null structure groups, and complex brane intersections, we propose a comprehensive theoretical methodology named the M-Theoretic Mathematical Integrator (MTMI). This hypothetical computational framework is designed to benchmark and simulate the duality-equivalent field descriptions and topological central charges inherent in maximal supergravity models. Furthermore, this paper delineates pressing open problems and novel frontiers of phenomenal research, laying a structured foundation for future explorations into the high-energy regimes of eleven dimensions and beyond.</span></p>
title The Hidden Mathematics to Unlock Eleven Dimensions Far and Beyond...
topic M-theory
Eleven Dimensions
Supergravity
E11 Superalgebra
Teleparallel Superspace
Generalized Geometry
url https://doi.org/10.5281/zenodo.19682591