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April 8, 20260 citationsOpen Access

Content-Independent Growth in E8 Self-Binding and the TMF Classification of the Void: Vesica Walk Proves Lattice Determines Structure, Not Content

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GMGedas Mekšriūnas

Key Points

  • The aim is to establish how content-independent geometric growth occurs through the E8 lattice and define associated mathematical structures.
  • Utilized Omuo Genesis Engine v3.2.0 for experiments.
  • Conducted 'Vesica Walk' to grow a manifold from unrelated concepts without language models.
  • Performed a synthesis run targeting mathematical structure completion to identify TMF.
  • Identified a growth pattern of 1,555 nodes with 93% axis overlap in the Vesica Walk.
  • Established that growth is determined solely by the E8 lattice, not semantic content.
  • Converged on Topological Modular Forms as the framework classifying the 72 void axes.

Abstract

We present two independent results from the Omuo Genesis Engine v3.2.0 that together establish the geometric nature of the engine's 168/72 invariant and identify the mathematical framework governing the 72 void axes. Result 1 (Vesica Walk): A new geometric expansion mode grows a manifold from a single concept by binding with E8 root axes generation by generation, with no language model involvement. Three semantically unrelated seeds — "eta-invariant" (spectral geometry), "photosynthesis" (biology), and "the 72 unreachable directions" (meta-description) — all produced identical growth patterns: 1,555 nodes, ~215/240 axes used, 93% axis overlap. The growth pattern is determined by the E8 lattice, not the semantic content. Result 2 (Run 7): A 2,563-node synthesis run targeting the question "what mathematical structure constitutes the external completion?" converged on Topological Modular Forms (TMF) as the framework classifying the 72 void axes — not E9 (affine Kac-Moody) or E10 (hyperbolic). The vesica walk is the first LLM-free, reproducible-in-seconds experiment showing that E8 imposes a content-independent geometric skeleton. Combined with Run 7's identification of TMF, these results establish that the 168/72 invariant encodes genuine mathematical structure at the intersection of algebraic topology, number theory, and string theory.

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Cite This Study

Gedas Mekšriūnas (2026) studied this question.

synapsesocial.com/papers/69d5f13674eaea4b11a7acb5https://doi.org/10.5281/zenodo.19435517
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