Nonlinear and Nonequilibrium Dynamics of Emergent Vacuum Susceptibility

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Autore principale: Sangalang, Erick
Natura: Recurso digital
Lingua:inglese
Pubblicazione: Zenodo 2026
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author Sangalang, Erick
author_facet Sangalang, Erick
contents <p>This paper investigates whether highly coherent, strongly driven electromagnetic systems could exhibit emergent nonlinear vacuum-response behavior under specialized nonequilibrium conditions. Extending earlier phenomenological susceptibility models, the work explores possible nonlinear dynamics including resonance saturation, hysteresis, metastability, synchronization, nonlinear damping, and delayed relaxation effects within constrained resonant electrodynamic frameworks. Grounded in nonlinear oscillator theory and precision electrodynamic consistency, the paper emphasizes boundedness, decoherence suppression, Maxwellian recovery, and experimental falsifiability rather than claims of established new physics, propulsion, or vacuum engineering. The analysis proposes that even robust null experimental results would provide valuable constraints on hypothetical emergent nonequilibrium vacuum susceptibility sectors.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_19866827
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Nonlinear and Nonequilibrium Dynamics of Emergent Vacuum Susceptibility
Sangalang, Erick
Theoretical physics
nonequilibrium thermodynamics
electromagnetic systems
energy budget
precision measurement
uncertainty analysis
experimental physics
electrodynamics
EVRT
<p>This paper investigates whether highly coherent, strongly driven electromagnetic systems could exhibit emergent nonlinear vacuum-response behavior under specialized nonequilibrium conditions. Extending earlier phenomenological susceptibility models, the work explores possible nonlinear dynamics including resonance saturation, hysteresis, metastability, synchronization, nonlinear damping, and delayed relaxation effects within constrained resonant electrodynamic frameworks. Grounded in nonlinear oscillator theory and precision electrodynamic consistency, the paper emphasizes boundedness, decoherence suppression, Maxwellian recovery, and experimental falsifiability rather than claims of established new physics, propulsion, or vacuum engineering. The analysis proposes that even robust null experimental results would provide valuable constraints on hypothetical emergent nonequilibrium vacuum susceptibility sectors.</p>
title Nonlinear and Nonequilibrium Dynamics of Emergent Vacuum Susceptibility
topic Theoretical physics
nonequilibrium thermodynamics
electromagnetic systems
energy budget
precision measurement
uncertainty analysis
experimental physics
electrodynamics
EVRT
url https://doi.org/10.5281/zenodo.19866827