Oscillating Hall And AHE Certification: Tz_Center, Disable-L, STLF, And SoZ Under A Fixed G–Σ–P–L Contract

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Main Author: Richardson, William J.
Format: Recurso digital
Published: Zenodo 2026
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author Richardson, William J.
author_facet Richardson, William J.
contents <p>This manuscript introduces an explicit <strong>Strong vs Strong-to-Weak</strong> classification for runs that already mint inside a fixed G–Σ–P–L corridor, formalizing a distinction that was previously implicit across multiple magnet and Hall/AHE studies. The key idea is that corridor validity and internal robustness are not the same object: some runs survive as a single-lane claim with low stall, low leakage, and wide margins, while others remain corridor-valid only by leaning on nontrivial z-tension, narrow margins, averaging, or additional structure. The Strong-to-Weak tag is computed strictly post-mint from already-logged tokens (yield, Sum-of-Zeros, even residue, quadrature/phase bounds), is bound to a preregistered contract, and is forbidden from moving thresholds or rescuing failures. By writing this stability label directly into the ledger, the work converts narrative judgments about “robust vs fragile” behavior into a replayable, falsifiable, and platform-agnostic object that sits cleanly between SoZ/no-test enforcement and 4S3 promotion. The result is not a new gate but a compression step: it freezes internal stability as a first-class, auditable attribute, preventing ad-hoc reinterpretation in later analyses and enabling consistent cross-run and cross-bench comparisons.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18235442
institution Zenodo
language
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Oscillating Hall And AHE Certification: Tz_Center, Disable-L, STLF, And SoZ Under A Fixed G–Σ–P–L Contract
Richardson, William J.
Strong-to-Weak
G–Σ–P–L corridor
ledger tokens
z-tension
Sum-of-Zeros
STLF
no-threshold-travel
robustness classification
Hall and AHE
falsifiable protocols
<p>This manuscript introduces an explicit <strong>Strong vs Strong-to-Weak</strong> classification for runs that already mint inside a fixed G–Σ–P–L corridor, formalizing a distinction that was previously implicit across multiple magnet and Hall/AHE studies. The key idea is that corridor validity and internal robustness are not the same object: some runs survive as a single-lane claim with low stall, low leakage, and wide margins, while others remain corridor-valid only by leaning on nontrivial z-tension, narrow margins, averaging, or additional structure. The Strong-to-Weak tag is computed strictly post-mint from already-logged tokens (yield, Sum-of-Zeros, even residue, quadrature/phase bounds), is bound to a preregistered contract, and is forbidden from moving thresholds or rescuing failures. By writing this stability label directly into the ledger, the work converts narrative judgments about “robust vs fragile” behavior into a replayable, falsifiable, and platform-agnostic object that sits cleanly between SoZ/no-test enforcement and 4S3 promotion. The result is not a new gate but a compression step: it freezes internal stability as a first-class, auditable attribute, preventing ad-hoc reinterpretation in later analyses and enabling consistent cross-run and cross-bench comparisons.</p>
title Oscillating Hall And AHE Certification: Tz_Center, Disable-L, STLF, And SoZ Under A Fixed G–Σ–P–L Contract
topic Strong-to-Weak
G–Σ–P–L corridor
ledger tokens
z-tension
Sum-of-Zeros
STLF
no-threshold-travel
robustness classification
Hall and AHE
falsifiable protocols
url https://doi.org/10.5281/zenodo.18235442