From Fractal Holography to Quantum Selection: A Synthesis of Hypotheses for Addressing the 'Why?' Problem in Physics

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1. Verfasser: Trekin, Sergey Anatolievich
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Veröffentlicht: Zenodo 2025
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author Trekin, Sergey Anatolievich
author_facet Trekin, Sergey Anatolievich
contents <p>This work presents a synthesis and evolution of the author's previously proposed hypotheses—the Fractal Holographic Universe (FHU) and Universal Functional Selection (UFS)—into a new, more fundamental framework unified with Tegmark's Mathematical Universe Hypothesis (MUH). It is postulated that physical reality is a specific mathematical structure selected from the landscape of possibilities by a principle of maximization of functional complexity, realized through a recursive holographic principle. A formalism for Quantum Universal Functional Selection (QUFS) is proposed, described by a variational principle for a complexity functional Φ[ψ]. This approach shifts the search for an answer to the question "Why are the laws of nature as they are?" from the realm of experiment to the realm of mathematical physics and information theory, offering specific paths for verification through the derivation of constants and proofs of uniqueness theorems.</p>
format Recurso digital
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spellingShingle From Fractal Holography to Quantum Selection: A Synthesis of Hypotheses for Addressing the 'Why?' Problem in Physics
Trekin, Sergey Anatolievich
Holographic principle
fractal universe
quantum gravity
consciousness
emergence of spacetime
universal functional selection
entanglement
entanglement entropy
cosmological constant
loop quantum gravity
category theory
<p>This work presents a synthesis and evolution of the author's previously proposed hypotheses—the Fractal Holographic Universe (FHU) and Universal Functional Selection (UFS)—into a new, more fundamental framework unified with Tegmark's Mathematical Universe Hypothesis (MUH). It is postulated that physical reality is a specific mathematical structure selected from the landscape of possibilities by a principle of maximization of functional complexity, realized through a recursive holographic principle. A formalism for Quantum Universal Functional Selection (QUFS) is proposed, described by a variational principle for a complexity functional Φ[ψ]. This approach shifts the search for an answer to the question "Why are the laws of nature as they are?" from the realm of experiment to the realm of mathematical physics and information theory, offering specific paths for verification through the derivation of constants and proofs of uniqueness theorems.</p>
title From Fractal Holography to Quantum Selection: A Synthesis of Hypotheses for Addressing the 'Why?' Problem in Physics
topic Holographic principle
fractal universe
quantum gravity
consciousness
emergence of spacetime
universal functional selection
entanglement
entanglement entropy
cosmological constant
loop quantum gravity
category theory
url https://doi.org/10.5281/zenodo.17104963