Emergent Vacuum Response in Coherent Nonequilibrium Electromagnetic Systems

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1. Verfasser: Sangalang, Erick
Format: Recurso digital
Sprache:Englisch
Veröffentlicht: Zenodo 2026
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author Sangalang, Erick
author_facet Sangalang, Erick
contents <p>This paper presents Emergent Vacuum Response Theory (EVRT) as a constrained, phenomenological framework for testing whether coherent nonequilibrium electromagnetic systems can exhibit small, resonance-dependent deviations from standard linear electrodynamic behavior. Rather than proposing new fundamental particles or exotic forces, the model introduces an effective pseudoscalar response coordinate as a collective vacuum parameter and derives its expected behavior under controlled experimental conditions.</p> <p>The work emphasizes falsifiability by identifying a minimal set of measurable observables such as temperature-dependent cavity ringdown, phase lag, linewidth variation, and magnetic-field scaling and proposing a realistic high-Q cavity experiment capable of discriminating the model from conventional electromagnetic effects. The framework explicitly preserves known conservation laws and excludes interpretations involving propulsion, antigravity, or energy extraction.</p> <p>Overall, the paper reframes the problem from one of speculative new physics to one of precision experimental discrimination, where both positive detections and robust null results provide meaningful scientific constraints on nonequilibrium electromagnetic behavior.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_19921864
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Emergent Vacuum Response in Coherent Nonequilibrium Electromagnetic Systems
Sangalang, Erick
nonequilibrium electrodynamics; emergent vacuum response; pseudoscalar susceptibility; high-Q cavities; resonant electromagnetic systems; cavity ringdown; phase lag; vacuum birefringence; temperature scaling; magnetic-field scaling; falsifiability; effective field theory
<p>This paper presents Emergent Vacuum Response Theory (EVRT) as a constrained, phenomenological framework for testing whether coherent nonequilibrium electromagnetic systems can exhibit small, resonance-dependent deviations from standard linear electrodynamic behavior. Rather than proposing new fundamental particles or exotic forces, the model introduces an effective pseudoscalar response coordinate as a collective vacuum parameter and derives its expected behavior under controlled experimental conditions.</p> <p>The work emphasizes falsifiability by identifying a minimal set of measurable observables such as temperature-dependent cavity ringdown, phase lag, linewidth variation, and magnetic-field scaling and proposing a realistic high-Q cavity experiment capable of discriminating the model from conventional electromagnetic effects. The framework explicitly preserves known conservation laws and excludes interpretations involving propulsion, antigravity, or energy extraction.</p> <p>Overall, the paper reframes the problem from one of speculative new physics to one of precision experimental discrimination, where both positive detections and robust null results provide meaningful scientific constraints on nonequilibrium electromagnetic behavior.</p>
title Emergent Vacuum Response in Coherent Nonequilibrium Electromagnetic Systems
topic nonequilibrium electrodynamics; emergent vacuum response; pseudoscalar susceptibility; high-Q cavities; resonant electromagnetic systems; cavity ringdown; phase lag; vacuum birefringence; temperature scaling; magnetic-field scaling; falsifiability; effective field theory
url https://doi.org/10.5281/zenodo.19921864