The Eslava Theorem

This paper formalizes The Eslava Theorem, a fully self-contained theoretical framework governing non-reaction spatial propulsion via resonant electrodynamic vacuum coupling. By eliminating explicit dependencies on classical Newtonian mechanics and standard General Relativistic drag constraints, the theoretical framework constructs an intrinsic force density operator driven by high-frequency magnetic modulation, ambient plasma parameters, and resonant Alfvén wave interaction. Under optimized internal field configurations, the Eslava operator induces a localized tensorial asymmetry, achieving up to 42% Effective Structural Mass Shielding without external propellant depletion.

Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-24
DOI
https://doi.org/10.5281/zenodo.22941693
Primary Topic
Quantum and Classical Electrodynamics
Type
preprint
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preprint

The Eslava Theorem

J Eslava
Zenodo (CERN European Organization for Nuclear Research)
Quantum and Classical Electrodynamics
preprint

The Eslava Theorem

J Eslava
preprint en

Abstract

This paper formalizes The Eslava Theorem, a fully self-contained theoretical framework governing non-reaction spatial propulsion via resonant electrodynamic vacuum coupling. By eliminating explicit dependencies on classical Newtonian mechanics and standard General Relativistic drag constraints, the theoretical framework constructs an intrinsic force density operator driven by high-frequency magnetic modulation, ambient plasma parameters, and resonant Alfvén wave interaction. Under optimized internal field configurations, the Eslava operator induces a localized tensorial asymmetry, achieving up to 42% Effective Structural Mass Shielding without external propellant depletion.

Zenodo (CERN European Organization for Nuclear Research)
Affordable and clean energy
Quantum and Classical Electrodynamics
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The Eslava Theorem — J Eslava · Zenodo (CERN European Organization for Nuclear Research) (2026) | TGRS Research Map | TGRS