Directional Phase Coherence in Polar Plasma Flows: Macro-Helicity Transport Across Scales

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Main Author: Vening, Edwin Jean-Paul
Format: Recurso digital
Published: Zenodo 2026
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_version_ 1866902091801296896
author Vening, Edwin Jean-Paul
author_facet Vening, Edwin Jean-Paul
contents <p></p> <p><strong>Directional Phase Coherence in Polar Plasma Flows: Macro‑Helicity Transport Across Scales</strong></p> <p>This work investigates how energy, phase, and helicity are transported across astrophysical systems, proposing a descriptive framework based on directional phase accumulation and a universal scalar phase field, written here as Θ(x). By linking microscopic helicity carriers (photons, spinors, neutrinos) with mesoscopic plasma structures (coronal arches, auroral streams) and macroscopic rotational systems (planetary poles, stellar rotation), the study suggests that coherent phase geometry may play an organizing role across scales.</p> <p>The framework highlights recurring observational signatures: polar‑aligned plasma pathways, helicity‑preserving conduits, and cross‑correlations between optical, neutrino, and plasma datasets. Drawing on historical records, modern spacecraft observations, and cross‑scale pattern analysis, this exploratory work outlines a testable and falsifiable phenomenological model connecting planetary, stellar, and magnetospheric environments.</p> <p>This version is a mechanically assisted generative draft, developed in collaboration with an LLM‑based design assistant that contributed to conceptual structuring, geometric interpretation, and visualization guidance. All figures derived from this process are considered generative art created within the conceptual framework of the study.</p> <p></p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_19076774
institution Zenodo
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publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Directional Phase Coherence in Polar Plasma Flows: Macro-Helicity Transport Across Scales
Vening, Edwin Jean-Paul
<p></p> <p><strong>Directional Phase Coherence in Polar Plasma Flows: Macro‑Helicity Transport Across Scales</strong></p> <p>This work investigates how energy, phase, and helicity are transported across astrophysical systems, proposing a descriptive framework based on directional phase accumulation and a universal scalar phase field, written here as Θ(x). By linking microscopic helicity carriers (photons, spinors, neutrinos) with mesoscopic plasma structures (coronal arches, auroral streams) and macroscopic rotational systems (planetary poles, stellar rotation), the study suggests that coherent phase geometry may play an organizing role across scales.</p> <p>The framework highlights recurring observational signatures: polar‑aligned plasma pathways, helicity‑preserving conduits, and cross‑correlations between optical, neutrino, and plasma datasets. Drawing on historical records, modern spacecraft observations, and cross‑scale pattern analysis, this exploratory work outlines a testable and falsifiable phenomenological model connecting planetary, stellar, and magnetospheric environments.</p> <p>This version is a mechanically assisted generative draft, developed in collaboration with an LLM‑based design assistant that contributed to conceptual structuring, geometric interpretation, and visualization guidance. All figures derived from this process are considered generative art created within the conceptual framework of the study.</p> <p></p>
title Directional Phase Coherence in Polar Plasma Flows: Macro-Helicity Transport Across Scales
url https://doi.org/10.5281/zenodo.19076774