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2025
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| Online Access: | https://doi.org/10.5281/zenodo.17245522 |
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| author | Song, seongho song, seongho |
| author_facet | Song, seongho song, seongho |
| contents | <p>This paper presents a new paradigm that aims to end the century-long debate over the probabilistic interpretation of quantum mechanics. We propose that Schrödinger's wave function is not a description of probability, but the **'Complex State' of the particle itself**—a coupling of a measurable **Real Part (material substance)** and an **Imaginary Part (informational blueprint)** that defines its identity from behind the scenes.</p> <p>The moment a particle exchanges energy with the external world, the process of **materialization** from 'blueprint' to 'substance' is **temporarily interrupted**. In this process, the particle's kinetic energy is transferred to the system's imaginary part, and the **mass of the real part annihilates to precisely zero**. This **'phase transition in the mode of existence'** is the origin of all non-local and probabilistic phenomena in quantum mechanics.</p> <p>This theory, through a mathematical analysis modeling the particle as a 'coupled complex dynamical system,' justifies the origin of inertia and the mechanism of the 'blinking' phenomenon. Furthermore, it quantitatively analyzes the 'quantum-classical boundary' problem—why quantum phenomena are suppressed in macroscopic objects—from the perspective of internal binding energy. We calculate that to make a 150g billiard ball 'blink,' an immense energy of approximately **1.35 x 10¹⁴ Joules** is required, equivalent to 32 megatons of TNT. Einstein's intuition was correct. God does not play dice; the universe operates on a perfectly deterministic system.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_17245522 |
| institution | Zenodo |
| language | |
| publishDate | 2025 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | Schrödinger's Particlization Song, seongho song, seongho <p>This paper presents a new paradigm that aims to end the century-long debate over the probabilistic interpretation of quantum mechanics. We propose that Schrödinger's wave function is not a description of probability, but the **'Complex State' of the particle itself**—a coupling of a measurable **Real Part (material substance)** and an **Imaginary Part (informational blueprint)** that defines its identity from behind the scenes.</p> <p>The moment a particle exchanges energy with the external world, the process of **materialization** from 'blueprint' to 'substance' is **temporarily interrupted**. In this process, the particle's kinetic energy is transferred to the system's imaginary part, and the **mass of the real part annihilates to precisely zero**. This **'phase transition in the mode of existence'** is the origin of all non-local and probabilistic phenomena in quantum mechanics.</p> <p>This theory, through a mathematical analysis modeling the particle as a 'coupled complex dynamical system,' justifies the origin of inertia and the mechanism of the 'blinking' phenomenon. Furthermore, it quantitatively analyzes the 'quantum-classical boundary' problem—why quantum phenomena are suppressed in macroscopic objects—from the perspective of internal binding energy. We calculate that to make a 150g billiard ball 'blink,' an immense energy of approximately **1.35 x 10¹⁴ Joules** is required, equivalent to 32 megatons of TNT. Einstein's intuition was correct. God does not play dice; the universe operates on a perfectly deterministic system.</p> |
| title | Schrödinger's Particlization |
| url | https://doi.org/10.5281/zenodo.17245522 |