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First published via Zenodo under the DOI above.
This preprint derives the structural and experimental foundations of nodal coherence in Type II superconductors within the TTN framework.
A conserved energy functional is introduced and fitted to vortex-lattice data with R² > 0.96, confirming the Abrikosov pattern as a coherence-minimizing structure.
All rights reserved under CC BY 4.0, preserving full attribution to the author.
Copyright: © 2025 Miguel Jorge Díaz Luna (TTN Project). All rights reserved.
Publisher: Zenodo
DOI: https://doi.org/10.5281/zenodo.17427740
License: Creative Commons Attribution 4.0 International (CC BY 4.0)
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Title Nodal Coherence in Type II Superconductors — Q.E.D. E31
First published via Zenodo under the DOI above.
This preprint derives the structural and experimental foundations of nodal coherence in Type II superconductors within the TTN framework.
A conserved energy functional is introduced and fitted to vortex-lattice data with R² > 0.96, confirming the Abrikosov pattern as a coherence-minimizing structure.
All rights reserved under CC BY 4.0, preserving full attribution to the author.
Copyright: © 2025 Miguel Jorge Díaz Luna (TTN Project). All rights reserved.
Publisher: Zenodo
DOI: https://doi.org/10.5281/zenodo.17427740
License: Creative Commons Attribution 4.0 International (CC BY 4.0)
Work type Technical
Tags type ii superconductors, ttn, qed e31, nodal coherence, abrikosov lattice, structural dynamics, quantum condensed matter, coherence law
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Registry info in Safe Creative
Identifier 2510243470938
Entry date Oct 24, 2025, 12:35 PM UTC
License All rights reserved
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Author 100.00 %. Holder Miguel Jorge Diaz Luna. Date Oct 24, 2025.
Information available at https://www.safecreative.org/work/2510243470938-nodal-coherence-in-type-ii-superconductors-q-e-d-e31