Physical Predictions and Observable Structures in an ``Information = Matter'' Unified Theory Curvature, Spectra, and Cosmological Signatures

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Autor principal: li, yuanjian
Formato: Recurso digital
Lenguaje:inglés
Publicado: Zenodo 2026
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author li, yuanjian
author_facet li, yuanjian
contents <p>We investigate the physical prediction layer of an ``information = matter'' unified theory whose core field equations have been developed in a previous work. Starting from the information--Einstein equation<br>\[<br>G_{ij}=\kappa\,I_{ij}[\rho],<br>\]<br>and its quantum and unified extensions, we derive concrete classes of observable consequences: (i) effective equations of state and modified Friedmann equations in homogeneous cosmology; (ii) information-induced corrections to gravitational lensing and post-Newtonian parameters; (iii) spectral predictions for bound states and mass gaps arising from information potentials; and (iv) constraints on information curvature from black hole thermodynamics and area laws. We provide detailed derivations of each prediction, identify the minimal assumptions required, and discuss how these predictions could, in principle, be confronted with observations. The paper is entirely self-contained and is written to make explicit the bridge from the abstract information-geometric equations to concrete physical observables.</p>
format Recurso digital
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institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Physical Predictions and Observable Structures in an ``Information = Matter'' Unified Theory Curvature, Spectra, and Cosmological Signatures
li, yuanjian
information = matter
information--Einstein equation
\[ G_{ij}=\kappa\,I_{ij}[\rho], \]
<p>We investigate the physical prediction layer of an ``information = matter'' unified theory whose core field equations have been developed in a previous work. Starting from the information--Einstein equation<br>\[<br>G_{ij}=\kappa\,I_{ij}[\rho],<br>\]<br>and its quantum and unified extensions, we derive concrete classes of observable consequences: (i) effective equations of state and modified Friedmann equations in homogeneous cosmology; (ii) information-induced corrections to gravitational lensing and post-Newtonian parameters; (iii) spectral predictions for bound states and mass gaps arising from information potentials; and (iv) constraints on information curvature from black hole thermodynamics and area laws. We provide detailed derivations of each prediction, identify the minimal assumptions required, and discuss how these predictions could, in principle, be confronted with observations. The paper is entirely self-contained and is written to make explicit the bridge from the abstract information-geometric equations to concrete physical observables.</p>
title Physical Predictions and Observable Structures in an ``Information = Matter'' Unified Theory Curvature, Spectra, and Cosmological Signatures
topic information = matter
information--Einstein equation
\[ G_{ij}=\kappa\,I_{ij}[\rho], \]
url https://doi.org/10.5281/zenodo.19327237