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March 25, 20260 citationsOpen Access

Coherence-Induced Obstruction and Emergent Hopf Structures in a Discrete Mod-9 Lattice

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FMFrancisco Javier González Martín

Key Points

  • The aim is to explore how coherence influences spatial propagation in discrete linear systems on modular lattices.
  • Investigated spectral coherence in modular lattice models.
  • Analyzed the dynamics of spatial propagation and coherence breakdown.
  • Identified emergent structures and phase gradients.
  • Exact spectral coherence enforces mono-frequency dynamics and ultralocal behavior.
  • Spatial propagation occurs post-coherence breakdown through spectral mixing.
  • Emergent configurations consistent with Hopf-type solitons act as attractors.

Abstract

This work investigates a structural obstruction governing the relation between temporal coherence and spatial propagation in discrete linear systems defined over modular lattices. We identify that exact spectral coherence enforces mono-frequency dynamics and leads to ultralocal behavior, suppressing spatial transport. Spatial propagation emerges only after the breakdown of coherence, through spectral mixing and the generation of effective phase gradients, giving rise to a coarse-grained Laplacian operator. Within this emergent regime, the system admits a consistent field interpretation in which geometry and topology arise dynamically. In particular, configurations consistent with Hopf-type solitons appear as attractors without being imposed at the continuum level. These results establish a concrete mechanism linking coherence, decoherence, and the emergence of effective field structure in discrete systems. The analysis is restricted to the class of modular lattice models considered.

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Cite This Study

Francisco Javier González Martín (2026) studied this question.

synapsesocial.com/papers/69c37c33b34aaaeb1a67ef96https://doi.org/10.5281/zenodo.19184980
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