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May 9, 20260 citationsOpen Access

GTii Note 2: Non‑Reciprocal Stability in Dusty Plasma

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WSWaldemar Superson

Key Points

  • This work aims to interpret experimental findings revealing non-reciprocal forces in dusty plasma using a generative framework.
  • Utilized a physics-informed machine learning model to analyze experimental data.
  • Reconstructed interactions in dusty plasma with high precision.
  • Interpreted findings within the GTii (Generative Theory of Iterative Invariants) framework.
  • Demonstrated the existence of non-reciprocal, non-conservative forces in dusty plasma.
  • Identified asymmetric interactions contradicting classical plasma theory.
  • Revealed hidden dynamical structures within multi-body systems.

Abstract

This GTii Note provides a generative interpretation of recent experimental results demonstrating non‑reciprocal, non‑conservative forces in dusty plasma, reconstructed with high precision usinga physics‑informed machine‑learning model. The discovery reveals asymmetric interactions that contradict classical plasma theory and expose hidden dynamical structure within multi‑body systems. GTii (Generative Theory of Iterative Invariants) interprets these findings as direct manifestations of SBD‑level generativity: stability emerging from iterative, context‑dependent rules rather than symmetric pairwise forces. The Note outlines how the observed asymmetry, environmental dependence, and non‑linear charge behavior correspond to GTii concepts of stability without symmetry and coherence without mass. This work situates the dusty‑plasma discovery within a broader generative framework, illustratinghow physical behavior at the SBP level reflects deeper, non‑equilibrium stabilizing dynamics. Author: Waldemar Superson

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Cite This Study

Waldemar Superson (2026) studied this question.

synapsesocial.com/papers/69fed0abb9154b0b82877b35https://doi.org/10.5281/zenodo.20076573
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