Magnetic Space Cosmology and Quantum Mechanics: A Reinterpretation as Wave-Medium Interaction

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Autore principale: Kim, H.S
Natura: Recurso digital
Lingua:inglese
Pubblicazione: Zenodo 2025
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author Kim, H.S
author_facet Kim, H.S
contents <p>While quantum mechanics describes the microscopic world with astounding<br> accuracy, its fundamental principleswave-particle duality, non-locality, and the<br> measurement problemhave fueled a century of interpretational debates. This<br> paper argues that these challenges demand a new perspective on physical re<br>ality and presents a causal, physical reinterpretation of quantum mechanics<br> within the framework of Magnetic Space Cosmology (MSC). MSC posits<br> that the universe is filled with an energy-less medium called ‘Magnetic Space<br> (M)’ and that particles are ‘vibrating entities’ that interact with M. This<br> paper redefines quantum mechanics as "the study of the total interaction<br> that a magnetic wave (MW), generated by a single vibrating parti<br>cle, forms with all other particles (waves) throughout the universe<br> via the M medium." Under this new definition, quantum superposition and<br> entanglement are explained as ‘phase correlations’ of MWs imprinted on the<br> Mmedium, and probability is described by the ‘condition for stable stand<br>ing waves’ of MWs. Finally, by demonstrating how the operating principle of<br> a quantum computer serves as a concrete application of this new interpreta<br>tion, this paper argues that MSC can provide an intuitive physical reality for<br> quantum phenomena.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_15776690
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Magnetic Space Cosmology and Quantum Mechanics: A Reinterpretation as Wave-Medium Interaction
Kim, H.S
Quantum Mechanics, Interpretation of Quantum Mechanics, Magnetic Space Cosmology (MSC), Wave-Medium Interaction, Quantum Entanglement, Mea surement Problem, Wave Function, Quantum Computer, Causal Interpretation, Foun dations of Physics.
<p>While quantum mechanics describes the microscopic world with astounding<br> accuracy, its fundamental principleswave-particle duality, non-locality, and the<br> measurement problemhave fueled a century of interpretational debates. This<br> paper argues that these challenges demand a new perspective on physical re<br>ality and presents a causal, physical reinterpretation of quantum mechanics<br> within the framework of Magnetic Space Cosmology (MSC). MSC posits<br> that the universe is filled with an energy-less medium called ‘Magnetic Space<br> (M)’ and that particles are ‘vibrating entities’ that interact with M. This<br> paper redefines quantum mechanics as "the study of the total interaction<br> that a magnetic wave (MW), generated by a single vibrating parti<br>cle, forms with all other particles (waves) throughout the universe<br> via the M medium." Under this new definition, quantum superposition and<br> entanglement are explained as ‘phase correlations’ of MWs imprinted on the<br> Mmedium, and probability is described by the ‘condition for stable stand<br>ing waves’ of MWs. Finally, by demonstrating how the operating principle of<br> a quantum computer serves as a concrete application of this new interpreta<br>tion, this paper argues that MSC can provide an intuitive physical reality for<br> quantum phenomena.</p>
title Magnetic Space Cosmology and Quantum Mechanics: A Reinterpretation as Wave-Medium Interaction
topic Quantum Mechanics, Interpretation of Quantum Mechanics, Magnetic Space Cosmology (MSC), Wave-Medium Interaction, Quantum Entanglement, Mea surement Problem, Wave Function, Quantum Computer, Causal Interpretation, Foun dations of Physics.
url https://doi.org/10.5281/zenodo.15776690