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Papers
This page collects formal papers, working drafts, and supporting notes from the Atlas Solver research program. Together these documents develop a geometric framework for weak-field multi-body general relativity, with emphasis on coherence surfaces, parity structure, solver architecture, and exploratory extensions.
Featured Papers
Gravitational Coherence Surface
A geometric construction derived from General Relativity field behavior that defines coherence boundaries in multi-body curvature systems.
Read PaperATLAS Paper II – Parity Networks
Development of geometric parity networks and curvature interaction structures for multi-body gravitational systems.
Read PaperATLAS Paper III – Solver Architecture
Design and architecture of the Atlas Solver spacetime simulation framework.
Read PaperWorking Drafts & Research Notes
Structural & Datum Interpretation
- Datum Fidelity Note Datum handling, fidelity constraints, and structural interpretation within the Atlas framework.
- Datum Fidelity Note v2 Revised framing and refinements to the original datum fidelity note.
- Paper I Section 9.5 Draft section connected to the first Atlas paper and its broader theoretical construction.
Topology & Parity Behavior
- Parity Topology Merger Note Topology, parity behavior, and merger structures in the Atlas framework.
- Node 1 Geodesic Disorder Geodesic disorder behavior and its implications for local node structure.
Astrophysical & Exploratory Extensions
- Oort Dark Matter Addendum Oort-style dark matter questions examined through the Atlas geometric lens.
- Triple Junction Black Holes Triple-junction structures and possible black hole interpretations.
Framework Context
These papers and drafts represent ongoing work in geometric approaches to General Relativity, weak-field curvature structure, parity networks, and multi-body gravitational simulation.
As the research program develops, formal papers and working notes will continue to be added here, extending Atlas as both a theoretical framework and a solver-based research instrument.