Kinetic Quantum Displacement (KQD): A New Framework for Chronogenesis and Gravitational Equilibrium in Black Holes

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1. Verfasser: Park, Seongmin
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Veröffentlicht: Zenodo 2026
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author Park, Seongmin
author_facet Park, Seongmin
contents <p>This paper proposes a novel physical mechanism termed <strong>"Kinetic Quantum Displacement (KQD)"</strong>, asserting that time is not a fundamental background of the universe but a byproduct generated by the motion of matter. We define the principle of <strong>"Chronogenesis,"</strong> where macroscopic motion induces fluctuations in microscopic quantum coordinates, resulting in the accumulation of infinitesimal energy—consistent with E=mc2—which manifests as the flow of time.</p> <p>Furthermore, this framework is applied to stellar evolution to re-evaluate the nature of black holes. We demonstrate that within a black hole, the extreme inward gravitational force and outward quantum repulsion reach a state of perfect <strong>Gravitational Equilibrium (Net Force = 0)</strong>. In this state, KQD events are suppressed, leading to <strong>"Chronostasis"</strong>—the cessation of time generation.</p> <p>Ultimately, this research suggests that the impossibility of time travel is not an absolute law but a formidable engineering challenge involving the global recovery of dissipated KQD energy and the precise restoration of quantum coordinates. By providing a potential link between General Relativity and Quantum Mechanics, this paper offers a new paradigm for resolving the black hole information paradox and the arrow of time.</p>
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spellingShingle Kinetic Quantum Displacement (KQD): A New Framework for Chronogenesis and Gravitational Equilibrium in Black Holes
Park, Seongmin
KQD
Black hole
<p>This paper proposes a novel physical mechanism termed <strong>"Kinetic Quantum Displacement (KQD)"</strong>, asserting that time is not a fundamental background of the universe but a byproduct generated by the motion of matter. We define the principle of <strong>"Chronogenesis,"</strong> where macroscopic motion induces fluctuations in microscopic quantum coordinates, resulting in the accumulation of infinitesimal energy—consistent with E=mc2—which manifests as the flow of time.</p> <p>Furthermore, this framework is applied to stellar evolution to re-evaluate the nature of black holes. We demonstrate that within a black hole, the extreme inward gravitational force and outward quantum repulsion reach a state of perfect <strong>Gravitational Equilibrium (Net Force = 0)</strong>. In this state, KQD events are suppressed, leading to <strong>"Chronostasis"</strong>—the cessation of time generation.</p> <p>Ultimately, this research suggests that the impossibility of time travel is not an absolute law but a formidable engineering challenge involving the global recovery of dissipated KQD energy and the precise restoration of quantum coordinates. By providing a potential link between General Relativity and Quantum Mechanics, this paper offers a new paradigm for resolving the black hole information paradox and the arrow of time.</p>
title Kinetic Quantum Displacement (KQD): A New Framework for Chronogenesis and Gravitational Equilibrium in Black Holes
topic KQD
Black hole
url https://doi.org/10.5281/zenodo.19609174