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Main Author: Misse, Gabriel
Format: Recurso digital
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Published: Zenodo 2025
Online Access:https://doi.org/10.5281/zenodo.14941542
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author Misse, Gabriel
author_facet Misse, Gabriel
contents <p>In this paper, I propose a novel theoretical framework for understanding the<br>structure of space-time and gravity through the lens of a universal magnetic field. I<br>hypothesize that the fundamental structure of the universe is governed by a cosmic<br>magnetic field with monopole-like structures, which influence the curvature of<br>space-time and the behavior of gravitational forces. This magnetic framework<br>introduces the concept of quantum magnetic monopoles, which, through their<br>interactions with space-time, give rise to gravitational effects. We suggest that this<br>model may offer a new way of unifying gravity with quantum mechanics and could<br>provide insights into unresolved questions regarding the nature of space-time, dark<br>matter, and the origin of the universe. Furthermore, we discuss potential<br>experimental tests, such as the detection of magnetic monopoles and the study of<br>gravitational wave patterns, that could validate this hypothesis.</p>
format Recurso digital
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institution Zenodo
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publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle The Universal Magnetic Field and its Role in Space-Time Structure: A Novel Approach to Gravity and Quantum Gravity
Misse, Gabriel
<p>In this paper, I propose a novel theoretical framework for understanding the<br>structure of space-time and gravity through the lens of a universal magnetic field. I<br>hypothesize that the fundamental structure of the universe is governed by a cosmic<br>magnetic field with monopole-like structures, which influence the curvature of<br>space-time and the behavior of gravitational forces. This magnetic framework<br>introduces the concept of quantum magnetic monopoles, which, through their<br>interactions with space-time, give rise to gravitational effects. We suggest that this<br>model may offer a new way of unifying gravity with quantum mechanics and could<br>provide insights into unresolved questions regarding the nature of space-time, dark<br>matter, and the origin of the universe. Furthermore, we discuss potential<br>experimental tests, such as the detection of magnetic monopoles and the study of<br>gravitational wave patterns, that could validate this hypothesis.</p>
title The Universal Magnetic Field and its Role in Space-Time Structure: A Novel Approach to Gravity and Quantum Gravity
url https://doi.org/10.5281/zenodo.14941542