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January 18, 20260 citationsOpen Access

Geometric Constraints on Interaction Structures in Strong-Field Astrophysical Systems

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CRChirag Rathi

Key Points

  • The study aims to explore how geometric constraints affect interaction structures in non-ideal astrophysical environments.
  • Developed a geometry-first framework for analyzing interaction structures
  • Examined configurations concerning collision suppression and stability
  • Applied the framework to dual-source stellar systems and compact objects
  • Identified key geometric factors that limit interaction configurations
  • Showed that spatial geometry significantly influences collision suppression and stability
  • Demonstrated enhanced interaction efficiency in specific geometric arrangements

Abstract

This preprint presents a geometry-first, constraint-based framework for interaction structures in non-ideal astrophysical environments. The analysis examines how spatial geometry alone constrains admissible configurations with respect to collision suppression, stability under perturbations, and interaction efficiency. The framework applies across regimes including dual-source stellar systems and compact objects, where curvature and multi-source interference dominate structural behavior. The treatment is intentionally structural and conceptual, focusing on geometric admissibility rather than implementation-specific realizations.

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Cite This Study

Chirag Rathi (2026) studied this question.

synapsesocial.com/papers/696c785beb60fb80d1396813https://doi.org/10.5281/zenodo.18267685
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