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April 18, 20260 citationsOpen Access

GL1 IV - A T5-Replacement Lemma from Carrier Capture and Shift Regimes

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SSStephen Steiner

Key Points

  • The goal is to establish a new input methodology for the GL1 program using T5-replacement concepts.
  • Developed a T5-replacement input within the mod-6 ±1 support space U6.
  • Utilized b-adic shells for modeling composites with displacement branches.
  • Applied empirical inputs with carrier-capture depths and stability under mass guards.
  • Established a pushforward covariance for LPF-filtered profiles.
  • Derived a relative transport lemma to manage indicators of bad sets.
  • Achieved a GL1-compatible control of residual energy, illustrated by line_ratio.

Abstract

We formulate, inside the mod-6 ±1 support space U6, an operator-facing T5-replacement input for the GL1 program: the missing step geometry ⇒uniform residual/tail control. We work with b-adic shells Lℓ = [bℓ, bℓ+1) ∩U6 (typically b= 5), model composites by branch-aware displacement branches, and allow an optional p4 filament/switch layer. The empirical input is a finite carrier-capture depth, stable shift regimes, mass guards, and null-model separation. The formal core is a pushforward covariance statement for LPF-filtered branch profiles under the transition ℓ→ℓ+ 1, up to a controlled defect. From capture, carrier transport, and guards we obtain a relative transport lemma for bad-set indicators; with an additional lift step µB ⇒µdiag this becomes a GL1-compatible control of residual energy, for example of lineᵣatio. The paper remains strictly below an RH claim. Its role in the suite is to isolate the formal T5-style bridge and to reduce the remaining work to two hard knots: (K1) arithmetic pushforward covariance / (M+) and (K2) the operator lift or embedding into the whitened band metric.

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Cite This Study

Stephen Steiner (2026) studied this question.

synapsesocial.com/papers/69e320fd40886becb65401f1https://doi.org/10.5281/zenodo.19604840
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