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February 8, 20260 citationsOpen Access

Relativistic Shedding: A Kinematic Threshold for Emission into Weakly Coupled Eigenmodes (Foundational formulation, Version 6)

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ADAric Dunn

Key Points

  • This research aims to define a threshold for energy transfer from a relativistic source into propagating eigenmodes.
  • Formalization of relativistic shedding as a kinematic concept
  • Independence from specific laboratory settings
  • Identification of threshold bracketing and resonance selectivity as falsifiers
  • Established a stable definition of relativistic shedding
  • Introduced a compact formalism applicable across various implementations
  • Confirmed that emission occurs when the source synchronism line intersects mode branches

Abstract

Relativistic Shedding (RS) is defined here as a threshold turn‑on of energy transfer from a relativistic, constant‑velocity source into a propagating eigenmode of the coupled field–environment system. The defining condition is purely kinematic: emission becomes allowed when the source synchronism line intersects a propagating mode branch (equivalently, a phase‑velocity criterion in bulk media). This paper formalizes RS independently of any single laboratory architecture and provides minimal, model‑independent falsifiers (threshold bracketing/ABAB reversibility, resonance selectivity, detuning controls). It supersedes earlier exploratory RS drafts by consolidating a stable definition and a compact formalism intended to remain valid across future refinements in implementations, parameterizations, and cosmological applications.

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Cite This Study

Aric Dunn (2026) studied this question.

synapsesocial.com/papers/698828770fc35cd7a8847f96https://doi.org/10.5281/zenodo.18505421
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