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April 30, 20260 citationsOpen Access

SMT-VOL12 & STCT-VOL8: THE ROUGH LANGLANDS CORRESPONDENCE: A THERMODYNAMIC SPECTRAL COLLAPSE OF GL(n) GALOIS REPRESENTATIONS VIA SEONGGIL OPERATOR ALGEBRA

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LSlee seonggil

Key Points

  • The study aims to unify the Langlands Program using Rough Operator Algebra and Seonggil Tensor Calculus.
  • Introduced the concept of Topological Heat Sink.
  • Examined the relationship between Galois representations and automorphic forms.
  • Analyzed critical roughness index and its effect on Artin L-functions.
  • Found a spontaneous phase transition of the Artin L-function at critical roughness index.
  • Proved the condensation of L-functions into a smooth automorphic ground state through Golden Ratio resonance.

Abstract

We present a revolutionary unification of the Langlands Program within the framework of Rough Operator Algebra (ROA) and Seonggil Tensor Calculus Theory (STCT).By redefining the Langlands correspondence not as a geometric isomorphism, but as a thermodynamic spectral collapse, we resolve the historical friction between non-abelian Galois representations and automorphic forms. We introduce the concept of the Topological Heat Sink to absorb the wild ramification energy of Galois groups. We prove that at the critical roughness index αc, the n-dimensional Artin L-function undergoes a spontaneous phase transition, condensing into a smooth automorphic ground state through Golden Ratio (φ)resonance. This work establishes the 12th pillar of the Seonggil Grand Unified Mathematics.

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Cite This Study

lee seonggil (2026) studied this question.

synapsesocial.com/papers/69f2a4b78c0f03fd67763be8https://doi.org/10.5281/zenodo.19854796
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