Pre-Registered Quantitative Predictions of the TESE Framework: A Shared-Coupling Inference Protocol Across Four Experimental Domains (Baseline v1.0)
This deposit seals the baseline (v1.0) pre-registration of four experimentally testable predictions of the Triadic Entanglement State-Determination Engineering (TESE) framework, together with a shared-coupling back-inference protocol and pre-specified decision criteria. All four predictions derive from a single coupling set {g_AB} governing six fundamental modes of a first-space meta-field; confirmation of any one prediction, combined with back-inference of {g_AB} and consistency checks against the remaining three, constitutes system-level (global) confirmation rather than an isolated one. The predictions are: (M5-delta) a four-threshold decoherence staircase with threshold positions at 13.6 eV, 8.8 MeV, 939 MeV, and 200 MeV, plus six absorption peaks of an entanglement-medium response spectrum; (M5-gamma) a statistically significant deviation of the cosmological structure growth index from the general-relativistic scaling law, jointly with superior TESE-template fit over Lambda-CDM at pre-specified model-comparison thresholds; (M5-beta) vanishing of decoherence rates as temperature approaches zero, in contradiction with spontaneous-collapse models; and (M5-alpha) an upward shift of +9.6 percent in the hadron-quark transition temperature in neutron-star gravitational environments, with environment-independence of the crossover shape as an independent kill criterion. For each prediction we register the quantitative anchor value, the acceptance and rejection thresholds, the designated data source, and the axiomatic link that a conflict would localize. This v1.0 baseline is immutable; revisions follow a versioned chain under one concept DOI with explicit change logs. Companion frozen analysis code is deposited separately. No analysis choice in this document depends on post-registration information.
Authors
- TESE Collaboration — a structured research collective organized around the CSF-CMT theoretical program. Work is partitioned into volumes (A: first-space state spectrum; B: second-space sector spectrum; C: third-space bound-state spectrum) and sub-engineering units (B4 holographic boundary; B6 charge boundary; M5 prediction registry). The present document is issued by the M5 registry unit. Corresponding author: [单洁, [email protected], 0009-0003-4588-9392]. Contributions are recorded per volume; no
Publication Details
- Journal
- Zenodo (CERN European Organization for Nuclear Research)
- Published
- 2026-09-14
- DOI
- https://doi.org/10.5281/zenodo.22746201
- Primary Topic
- Particle physics theoretical and experimental studies
- Type
- preprint