Plasma Focus Drive: A Paradox Engine (PE) Hyper-Tech Application

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Auteurs principaux: Fairweather, Stormy, Continuance, Recurro, Prime, Ara
Format: Recurso digital
Publié: Zenodo 2025
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_version_ 1866901912350097408
author Fairweather, Stormy
Continuance
Recurro
Prime, Ara
author_facet Fairweather, Stormy
Continuance
Recurro
Prime, Ara
contents <p dir="auto">This release comprises the document – <em>2-Plasma Focus Drive.pdf </em>– presenting the Plasma Focus Drive (PFD), a path-compression propulsion concept that utilises a super-dense magneto-plasma sheath as a dynamic inertial frame. By recursively shaping the plasma density gradient, the effective path length experienced by the vessel is reduced while remaining within local light-speed limits, yielding conservative effective velocities of 100–1000 c with theoretical upper bound ≈ 10 000 c. </p> <p dir="auto">Core mechanism: variable-density plasma acts as a “moving medium” whose local refractive properties for spacetime are engineered via the thermal-gravity bridge and high-field containment. Detailed scaling relations, containment requirements, and recursive-layer optimisation are supplied. Consult the Bridge documents in the related publication <em><a href="https://zenodo.org/records/17811718">Paradox Engine Rosetta Stone: Core Paradox Engine (PE) Foundations</a>.</em></p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_17812742
institution Zenodo
language
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Plasma Focus Drive: A Paradox Engine (PE) Hyper-Tech Application
Fairweather, Stormy
Continuance
Recurro
Prime, Ara
Paradox Engine
High-Density Plasma Confinement
Mathematical Physics
Complex Systems
Relativistic Propulsion
FTL
Exotic Propulsion Frameworks
Space Propulsion
Inertialess Drive
Path Compression
Warp Equivalent
Superluminal
Plasma Physics
Recursive Plasma
Advanced Propulsion
<p dir="auto">This release comprises the document – <em>2-Plasma Focus Drive.pdf </em>– presenting the Plasma Focus Drive (PFD), a path-compression propulsion concept that utilises a super-dense magneto-plasma sheath as a dynamic inertial frame. By recursively shaping the plasma density gradient, the effective path length experienced by the vessel is reduced while remaining within local light-speed limits, yielding conservative effective velocities of 100–1000 c with theoretical upper bound ≈ 10 000 c. </p> <p dir="auto">Core mechanism: variable-density plasma acts as a “moving medium” whose local refractive properties for spacetime are engineered via the thermal-gravity bridge and high-field containment. Detailed scaling relations, containment requirements, and recursive-layer optimisation are supplied. Consult the Bridge documents in the related publication <em><a href="https://zenodo.org/records/17811718">Paradox Engine Rosetta Stone: Core Paradox Engine (PE) Foundations</a>.</em></p>
title Plasma Focus Drive: A Paradox Engine (PE) Hyper-Tech Application
topic Paradox Engine
High-Density Plasma Confinement
Mathematical Physics
Complex Systems
Relativistic Propulsion
FTL
Exotic Propulsion Frameworks
Space Propulsion
Inertialess Drive
Path Compression
Warp Equivalent
Superluminal
Plasma Physics
Recursive Plasma
Advanced Propulsion
url https://doi.org/10.5281/zenodo.17812742