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March 31, 20260 citationsOpen Access

High-Energy Transport Ratio for the Open Chiral SCT Connection Matrix

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PKPavel Kramarenko-Byrd

Key Points

  • The aim is to study the high-energy limit of the transport ratio in the open chiral SCT connection matrix.
  • Examined the limit as energy increases (λ → +∞)
  • Defined and analyzed the transport ratio R(λ,m) using numerical methods
  • Verified asymptotic predictions for specific values of m and k over a range of λ
  • Assessed the accuracy of findings through residuals measurement
  • The transport ratio converges to a complex constant ρ(m) with correction terms of order 1/√λ.
  • Numerical verification showed residuals below 3.3 × 10⁻⁶ for certain values of m.
  • Confirmed previously established properties of the connection matrix

Abstract

Paper 42 in the "Geometry of the Critical Line" programme. Paper 41 constructed the connection matrix M(λ,m) for the open chiral SCT operator and proved the involution M² = I. RN13–14 proved that all four entries of M are nonzero on the real axis. This paper studies the high-energy limit λ → +∞ and establishes a numerical asymptotic law: the transport ratio R(λ,m) := M₂₁/M₁₁ converges to a complex constant ρ(m) with corrections of order 1/√λ. The asymptotic law is verified numerically for k = π/8 and m = 2, 4, 6, 10 on the range λ ∈ 400, 4000, with residuals below 3.3 × 10⁻⁶. No arithmetic interpretation is claimed. Part of a 46-paper open-access programme. The programme does not claim to prove the Riemann Hypothesis.

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Cite This Study

Pavel Kramarenko-Byrd (2026) studied this question.

synapsesocial.com/papers/69cb6589e6a8c024954b9930https://doi.org/10.5281/zenodo.19316347
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