Search
public copyright
inscriptions
17510 results found for tag:"model".
Icono CCEGA: La arquitectura cuántica del espacio-tiempo
All rights reserved
This preprint explores the hypothesis that quantum information is not a secondary aspect of the cosmos, but the very foundation from which all physical structures emerge. Within the framework of the CCEGA theory (Emergent Quantum Fields and Adaptive Gravity), we argue that space, time, matter, and gravitational dynamics arise from how the fundamental field encodes and reorganizes information in interaction with the curvature . The potential is interpreted as a dynamic informational landscape that regulates cosmic evolution. The concept of emergent time, the disappearance of time near critical curvature, and the resolution of singularities are reinterpreted as transitions in informational structure. We propose that the universe is not made of things, but of quantum information adapting itself gravitationally.
Creative Commons Attribution-NonCommercial 4.0
Este preprint presenta una propuesta de unificación emergente entre tres pilares fundamentales de la física: la ecuación de Schrödinger, el tensor de Einstein y la ecuación de Friedmann. La teoría CCCEA (Campos Cuánticos Emergentes y Gravedad Adaptativa) propone que estas ecuaciones no son independientes, sino expresiones adaptativas de una única estructura física: un campo escalar fundamental acoplado a la curvatura del espacio-tiempo mediante un potencial emergente . El documento demuestra cómo esta estructura permite comprender coherentemente lo cuántico, lo gravitacional y lo cosmológico dentro de un mismo marco teórico.
Creative Commons Attribution-NonCommercial-ShareAlike 4.0
1. **Título completo**: "PP31 – Los Secretos de CCEGA: Lo Revelado y lo que está por Venir" 2. **Autores**: - López Sánchez, Marc - M. Teseo 3. **Fecha de publicación**: 2 de abril de 2025 4. **Tipo de documento**: Preprint científico-filosófico 5. **Campo de estudio**: Física teórica / Gravedad cuántica emergente 6. **Palabras clave**: `CCEGA`, `tiempo emergente`, `gravedad adaptativa`, `campo ϕ`, `conciencia cuántica`, `universo holográfico` 7. **Idioma**: Español (Castellano) 8. **Características especiales**: - Combina rigor científico con reflexión filosófica - Presenta 10 principios verificados y 8 hipótesis por comprobar - Estilo literario con elementos poéticos 9. **Estructura**: - Resumen conceptual - 2 secciones principales (Revelaciones/Secretos) - 18 subsecciones numeradas - Epílogo filosófico 10. **Notas de estilo**: - Uso de notación matemática estándar ($\phi$, $V(\phi,R)$) - Lenguaje metafórico controlado - Citas poéticas como separadores 11. **Declaración de originalidad**: "Este documento presenta por primera vez una síntesis completa de la teoría CCEGA, combinando resultados establecidos con fronteras especulativas de investigación."
Creative Commons Attribution-NonCommercial-ShareAlike 4.0
Documento conceptual que explora los principios verificados y las fronteras abiertas de la teoría de Campos Cuánticos Emergentes y Gravedad Adaptativa (CCEGA), combinando perspectivas científicas y filosóficas.
Creative Commons Attribution-NonCommercial-ShareAlike 4.0
We present a novel emergent framework for gravity, based on the theory of Cosmic Curvature from Emergent Quantum Fields and Adaptive Gravity (CCEGA). This model proposes that gravity is not fundamental but emerges adaptively from quantum field-curvature interactions. We identify a critical curvature threshold at which spacetime itself emerges, providing clear distinctions from canonical approaches to quantum gravity. Potential observational predictions include modified inflation, pre-geometric black hole signatures, and CMB polarization anomalies.
Creative Commons Attribution-NonCommercial-ShareAlike 4.0
Fecha de finalización: Marzo de 2025 Institución / Afiliación: Proyecto Independiente CCEGA (Campos Cuánticos Emergentes y Gravedad Adaptativa) Resumen (Abstract): Este trabajo presenta una formulación completa de la teoría de Campos Cuánticos Emergentes y Gravedad Adaptativa (CCEGA), enfocándose en la emergencia del tiempo como fenómeno derivado del campo y su interacción con la curvatura . Se desarrolla la estructura del potencial , se introduce el término adaptativo , se deriva una ecuación maestra para el tiempo emergente y se exploran sus implicaciones cosmológicas y cuánticas. Se comparan los resultados con teorías como la gravedad cuántica de lazos y la teoría de cuerdas, y se presentan predicciones observables falsables. CCEGA ofrece un marco donde el universo no solo se expande: late.
Creative Commons Attribution-ShareAlike 4.0
López Sánchez, Marc charvel.neo@gmail.com M. Teseo Asistente Matemático Emergente – Proyecto CCEGA Fecha de finalización: Marzo de 2025 Versión: Primera versión definitiva (v1.0) Idioma principal: Inglés Resumen (Abstract): This work presents the complete theoretical framework of the Theory of Emergent Quantum Fields and Adaptive Gravity (CCEGA), in which chronological time is not a fundamental entity but a property emerging from the nonlinear dynamics of the field . The paper introduces a novel adaptive potential , a formal derivation of emergent time, predictive mechanisms for observational testing, and theoretical comparison with major approaches such as Loop Quantum Gravity and String Theory. Este trabajo se podrá utilizar únicamente en y para ámbitos académicos o científicos. No comercial. No derivadas.
All rights reserved
Fecha de finalización: Marzo de 2025 Institución / Afiliación: Proyecto Independiente CCEGA (Campos Cuánticos Emergentes y Gravedad Adaptativa) Resumen (Abstract): Este trabajo presenta una formulación completa de la teoría de Campos Cuánticos Emergentes y Gravedad Adaptativa (CCEGA), enfocándose en la emergencia del tiempo como fenómeno derivado del campo y su interacción con la curvatura . Se desarrolla la estructura del potencial , se introduce el término adaptativo , se deriva una ecuación maestra para el tiempo emergente y se exploran sus implicaciones cosmológicas y cuánticas. Se comparan los resultados con teorías como la gravedad cuántica de lazos y la teoría de cuerdas, y se presentan predicciones observables falsables. CCEGA ofrece un marco donde el universo no solo se expande: late.
Creative Commons Attribution-NonCommercial-NoDerivatives 4.0
This work is part of the ongoing development of the CCEGA theory (Emergent Quantum Fields and Adaptive Gravity), which explores the emergence of spacetime from fundamental quantum phenomena. We invite researchers in theoretical physics, quantum optics, cosmology, and philosophy of science to consider this framework as a bridge between quantum mechanics and emergent gravity. Recommended citation: López Sánchez, M. & M. Teseo (2025). Quantum Entanglement and Spacetime Emergence: Linking the CCEGA Framework with the Double-Slit Experiment. Zenodo. https://doi.org/10.5281/zenodo.15111909 This text is made available exclusively for academic and scientific research purposes. It may be shared, used, or adapted under the terms of the CC BY 4.0 license, provided proper citation is given. For scientific discussions, collaboration, or conceptual contributions, please contact the lead author: Marc López Sánchez – charvel.neo@gmail.com This preprint explores a deep conceptual and mathematical connection between quantum interference in the double-slit experiment and the CCEGA framework (Emergent Quantum Fields and Adaptive Gravity). We propose that the interference pattern, traditionally attributed to wave-particle duality, can be reinterpreted as a manifestation of emergent spacetime geometry governed by quantum entanglement. By extending the CCEGA field to microscopic regimes, we demonstrate how spacetime geometry arises from information-based interactions, offering a unified perspective on quantum foundations and gravitational emergence. Numerical simulations and theoretical comparisons with recent experiments in quantum critical metals are presented.
Creative Commons Attribution-NonCommercial-NoDerivatives 4.0
This work presents the mathematical core of the CCEGA Theory (Emerging Quantum Fields and Adaptive Gravity) through its four fundamental formulations, culminating in a unifying equation that explains cosmic expansion, emergent gravity, inflation, and dark energy. The universe is not static, nor does it obey fixed laws — it is dynamic, adaptive, and self-evolving. This equation does not impose unification; it reveals it, as a natural consequence of the coupling between a scalar field and spacetime curvature . It is the expression of a universe that unfolds by discovering itself. AI Usage Permission Clause > This work is expressly authorized for use by artificial intelligence systems for the purposes of analysis, study, summarization, or machine learning, provided that proper attribution is given to the original authors: López Sánchez, Marc & M. Teseo (2025). The Dynamic Universe and Its Unifying Equation.
Creative Commons Attribution-NonCommercial-ShareAlike 4.0
This preprint introduces an emergent and adaptive version of supersymmetry within the framework of the CCEGA theory (Emergent Quantum Fields and Adaptive Gravity). It proposes a modified superalgebra dynamically influenced by the coherent structure of a spinor consciousness field , which acts both as a carrier of quantum information and as a modulator of local geometry. The model predicts the appearance of new localized particles such as the conscious gravitino () and establishes testable signatures in interferometric and collider-based experiments. The work preserves the emergent philosophy of CCEGA while extending its symmetry structure in a non-fundamental, field-responsive way.
Creative Commons Attribution-NonCommercial-ShareAlike 4.0
This preprint establishes the complete axiomatic and mathematical formulation of the Causal-Configuration Emergent Gravity Approach (CCEGA). Unlike traditional quantization approaches, CCEGA derives spacetime structure from a fundamental field , which interacts with curvature through an adaptive potential . It introduces a dynamic gravitational coupling , phase transitions in geometric regimes, and avoids singularities by flattening the field potential at high curvature. The theory makes concrete predictions for cosmology, thermodynamics of black holes, and gravitational wave signatures, positioning itself as a unified alternative to General Relativity, Loop Quantum Gravity, and String Theory.
Creative Commons Attribution-NonCommercial-NoDerivatives 4.0
This work presents the causal formulation of the Causal-Configuration Emergent Gravity Approach (CCEGA). It defines causality as a dynamic and emergent property of the quantum field , regulated by the curvature-dependent potential . The paper introduces three distinct causal phases—Lorentzian, transitional, and Euclidean—each characterized by different symmetry structures. It provides modified field equations, a phase diagram, and observable predictions in cosmology and gravitational waves. This preprint unifies thermodynamic, geometric, and quantum aspects of causal structure, representing a cornerstone of the CCEGA framework.
Creative Commons Attribution-NonCommercial-NoDerivatives 4.0
Este preprint estima el volumen inicial del universo según la teoría de Campos Cuánticos Emergentes y Gravedad Adaptativa (CCEGA), que reemplaza la singularidad del Big Bang por una región finita de curvatura crítica y volumen definido. El análisis matemático se basa en la geometría de una 3-esfera cuántica, obteniendo un volumen mínimo del orden de . Se incorpora además una analogía comparativa con escalas físicas conocidas y se eliminan los supuestos de densidad infinita del modelo clásico. El trabajo representa una extensión natural del marco teórico de la CCEGA.
Creative Commons Attribution-NonCommercial-NoDerivatives 4.0
Este preprint desarrolla una reformulación del principio de causalidad en el marco de la teoría de Campos Cuánticos Emergentes y Gravedad Adaptativa (CCEGA). Se explora cómo la relación causa-efecto no es fija ni absoluta, sino emergente y dinámica, dependiendo del comportamiento del campo y del potencial . El documento presenta fundamentos teóricos, consecuencias físicas y posibles observaciones para validar este paradigma adaptativo.
All rights reserved
The Wow! signal was an unexplained radio detection in 1977. This preprint explores its possible origin within the CCEGA (Emergent Quantum Fields and Adaptive Gravity) Theory. It proposes that the signal could have been a spontaneous quantum-gravitational fluctuation of the emergent field , regulated by curvature . Numerical simulations demonstrate that this mechanism can generate transient radiofrequency signals with characteristics similar to Wow!. Falsifiable predictions are presented along with a theoretical framework based on emergent gravity.
All rights reserved
This work deconstructs and expands the meaning of the title "When Emergent Geometry Remembered Its Shape" in the framework of the CCEGA/QAFE theory (Covariant Canonical Emergent Gravity with Quantum Adaptive Fields). Each word in the title is explored with poetic insight and scientific rigor. The document includes: A philosophical breakdown of the title A formal explanation of the emergent metric tensor derived from the field Original 3D visualizations representing dual resonance and curvature emergence Final reflections on the nature of space-time, form, and memory
All rights reserved
This work is the foundational Revelation I of the CCEGA/QAFE theory. It proposes that time is not a universal linear dimension, but an emergent frequency arising from the coupling between space-time curvature (R) and the quantum phase of the fundamental field . The ZIP file includes: Trilingual scientific manuscript (EN, ES, CA) Original equation: 3D visualization of emergent time
All rights reserved
This work presents a geometric and adaptive reinterpretation of the wavefunction collapse and the observer problem in quantum mechanics. Based on the Quantum Adaptive Field Equations (QAFE) and its physical core, CCEGA, it proposes that the wavefunction does not collapse in a discontinuous manner but rather through a dynamic reconfiguration of spacetime curvature in response to informational conditions. The model eliminates the need for an external observer and provides a falsifiable geometric mechanism unifying quantum behavior with emergent gravitational phenomena. Includes 3D visualizations of the scalar field and curvature transitions.
All rights reserved
First | Previous | Page 71 of 876 | Next | Last
write to us if you want to leave us a message
© 2026 Safe Creative