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March 26, 20260 citationsOpen Access

The Electrodynamic Vacuum: Relaxing the Lorenz Gauge for Novel Energy Extraction and Scalar-Longitudinal Wave Applications

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PHPaul Hallelujah

Key Points

  • The study aims to investigate the implications of relaxing the Lorenz gauge in electrodynamics, proposing mechanisms for energy extraction and wave interaction.
  • Analysis of the Lorenz gauge condition in classical electrodynamics.
  • Development of Extended Electrodynamics (EED) and ECE unified field theory.
  • Critique of Heaviside-Lorentz simplification and recovery of Stueckelberg Lagrangian.
  • Integration of Cartan geometry to account for spacetime torsion.
  • Modeling of the electrodynamic vacuum as a thermodynamically open system.
  • Demonstrated the restoration of active scalar and longitudinal modes.
  • Proposed scalar-longitudinal wave propagation mechanisms.
  • Established interactions between these waves and spacetime torsion.
  • Provided a path for energy exchange with the zero-point energy field.

Abstract

This paper explores the theoretical implications of relaxing the Lorenz gauge condition in classical electrodynamics to recover the full 16-component tensor framework. Developed through Extended Electrodynamics (EED) and Einstein-Cartan-Evans (ECE) unified field theory, the research demonstrates that the standard mathematical simplification where the divergence of the four-potential is zero artificially excludes physically active scalar and longitudinal modes. By restoring these components through a non-abelian symmetry, the paper establishes a physical mechanism for the propagation of scalar-longitudinal waves (SLWs) and their interaction with spacetime torsion. The work provides a rigorous path toward modeling the electrodynamic vacuum as a thermodynamically open system, facilitating directed energy and momentum exchange with the zero-point energy (ZPE) field. Key highlights include: Gauge Freedom Analysis: A critique of the Heaviside-Lorentz distillation and the recovery of the Stueckelberg Lagrangian. Topological Waveforms: Analysis of the Aharonov-Bohm effect as a baseline for longitudinal potential manifestations. ECE Unified Field Theory: Integration of Cartan geometry to account for spacetime torsion in electrodynamic coupling. Thermodynamic Reconceptualization: Transitioning from closed-loop transverse wave models to exergic, open-system energy extraction. Keywords: Extended Electrodynamics, ECE Theory, Lorenz Gauge, Scalar-Longitudinal Waves, Zero-Point Energy, Spacetime Torsion, Vacuum Energy, Gauge Symmetry, Stueckelberg Lagrangian, 16-component tensor.

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Cite This Study

Paul Hallelujah (2026) studied this question.

synapsesocial.com/papers/69c4cdb6fdc3bde44891a5d0https://doi.org/10.5281/zenodo.19210673
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