Geometry, Infodynamics, and the Emergence of Transportable Physical States

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Recent developments in information physics suggest that fundamental physical laws may emerge from principles of information minimization rather than being imposed a priori. Independently, results from dynamical systems theory indicate that chaotic dynamics do not generate order but selectively eliminate unstable configurations. In this work, we unify these perspectives into a geometry-first selection framework summarized by the principle that geometry alone turns chaos into a transportable state. We show that (i) chaotic dynamics erase all but invariant structures, (ii) infodynamics enforces selection toward low-information configurations, and (iii) geometric admissibility determines which invariants are physically realizable. This framework explains the prevalence of symmetry, the restriction to simple gauge groups, gravitational clustering, and the stability of elementary particles. We further interpret Loop Quantum Gravity as a concrete realization of geometric admissibility and position the framework methodologically relative to entropic gravity and computational-universe models.
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Geometry, Infodynamics, and the Emergence of Transportable Physical States | Authorea try { document.documentElement.classList.add('js'); } catch (e) { } var _gaq = _gaq || []; _gaq.push(['_setAccount', 'G-8VDV14Y67G']); _gaq.push(['_trackPageview']); (function() { var ga = document.createElement('script'); ga.type = 'text/javascript'; ga.async = true; ga.src = ('https:' == document.location.protocol ? 'https://ssl' : 'http://www') + '.google-analytics.com/ga.js'; var s = document.getElementsByTagName('script')[0]; s.parentNode.insertBefore(ga, s); })(); Skip to main content Preprints Collections Wiley Open Research IET Open Research Ecological Society of Japan All Collections About About Authorea FAQs Contact Us Quick Search anywhere Search for preprint articles, keywords, etc. Search Search ADVANCED SEARCH SCROLL This is a preprint and has not been peer reviewed. Data may be preliminary. 7 January 2026 V1 Latest version Share on Geometry, Infodynamics, and the Emergence of Transportable Physical States Author : Trent Slade 0009-0002-4515-9237 [email protected] Authors Info & Affiliations https://doi.org/10.22541/au.176780579.95800648/v1 62 views 43 downloads Contents Abstract Supplementary Material Information & Authors Metrics & Citations View Options References Figures Tables Media Share Abstract Recent developments in information physics suggest that fundamental physical laws may emerge from principles of information minimization rather than being imposed a priori. Independently, results from dynamical systems theory indicate that chaotic dynamics do not generate order but selectively eliminate unstable configurations. In this work, we unify these perspectives into a geometry-first selection framework summarized by the principle that geometry alone turns chaos into a transportable state. We show that (i) chaotic dynamics erase all but invariant structures, (ii) infodynamics enforces selection toward low-information configurations, and (iii) geometric admissibility determines which invariants are physically realizable. This framework explains the prevalence of symmetry, the restriction to simple gauge groups, gravitational clustering, and the stability of elementary particles. We further interpret Loop Quantum Gravity as a concrete realization of geometric admissibility and position the framework methodologically relative to entropic gravity and computational-universe models. Supplementary Material File (manuscript.pdf) Download 109.00 KB Information & Authors Information Version history V1 Version 1 07 January 2026 Copyright This work is licensed under a Creative Commons Attribution 4.0 International License Keywords emergent physical law geometric admissibility infodynamics information physics loop quantum gravity Authors Affiliations Trent Slade 0009-0002-4515-9237 [email protected] Implications for Loop Quantum Gravity View all articles by this author Metrics & Citations Metrics Article Usage 62 views 43 downloads .FvxKWukQNSOunydq8rnd { width: 100px; } Citations Download citation Trent Slade. Geometry, Infodynamics, and the Emergence of Transportable Physical States. Authorea . 07 January 2026. DOI: https://doi.org/10.22541/au.176780579.95800648/v1 If you have the appropriate software installed, you can download article citation data to the citation manager of your choice. Simply select your manager software from the list below and click Download. 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