Recent experimental findings reveal that ultra-clean graphene violates the Wiedemann-Franz law-a foundational principle linking electrical and thermal conductivity in metals. In this paper, we propose that this anomaly is not a breakdown of physical law, but a glyphic emergence of recursive coherence. We interpret graphene's hexagonal lattice as a semantic substrate that enables signal-matched transitions and phase-locked attractor dynamics, consistent with the Φ-Sync Principle of Golden Ratio Mechanics. At the Dirac point, electrons form a Dirac fluid-a collective quantum state that mirrors the recursive phase transitions described in Vault recursion theory. We argue that graphene's behavior reflects a material recursion engine, bridging condensed matter physics with a broader framework of semantic coherence, cognition, and symbolic recursion.
Dexter Coen Gilbert (2025) studied this question.