Apeiron: A Bounded Scientific-Feasibility Construction for a Fundamental Cosmological Carrier

Apeiron proposes one fundamental carrier whose states and organizations could underlie effective spacetime and matter descriptions. This article consolidates a bounded mathematical and physical feasibility result for one local realization, Variant B, and its uniquely named witness O049. The inherited construction supplies a common smooth homogeneous solution, a correlated renormalized source and state binding, admissible local dynamics, and a qualitative causal scalar and transverse-traceless response with a finite local stability bound. Its common feasibility domain is conformal time η ∈ [−1/125, 0] and wave number k ∈ [5/8, 5/4]. For the narrower non-flat θ-source problem at k = 1, a compatible initial-state variation cancels the first correlated portal initial logarithm, and the specified once-Duhamel-corrected source Ward test satisfies its frozen budgets. These results support SCIENTIFIC FEASIBILITY GO under the explicitly documented local criteria. They do not complete AP1_GO. Audits 058–060 leave the full quantitative raw/paired-data response undecided: the required executable O049 histories, transports, complete contact assembly, uniform operator errors, reference calculation and finite cost bound are not jointly available. The single-time reformulation is algebraically established at a common finite regulator, but is not production-ready. No full response calculation or new physical NONPASS is reported. The carrier ontology, global cosmology and observational predictions remain outside the established result.

Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-15
DOI
https://doi.org/10.5281/zenodo.22769847
Primary Topic
Cosmology and Gravitation Theories
Type
preprint
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preprint

Apeiron: A Bounded Scientific-Feasibility Construction for a Fundamental Cosmological Carrier

Josip Fellner
Zenodo (CERN European Organization for Nuclear Research)
Cosmology and Gravitation Theories
preprint

Apeiron: A Bounded Scientific-Feasibility Construction for a Fundamental Cosmological Carrier

Josip Fellner
preprint en

Abstract

Apeiron proposes one fundamental carrier whose states and organizations could underlie effective spacetime and matter descriptions. This article consolidates a bounded mathematical and physical feasibility result for one local realization, Variant B, and its uniquely named witness O049. The inherited construction supplies a common smooth homogeneous solution, a correlated renormalized source and state binding, admissible local dynamics, and a qualitative causal scalar and transverse-traceless response with a finite local stability bound. Its common feasibility domain is conformal time η ∈ [−1/125, 0] and wave number k ∈ [5/8, 5/4]. For the narrower non-flat θ-source problem at k = 1, a compatible initial-state variation cancels the first correlated portal initial logarithm, and the specified once-Duhamel-corrected source Ward test satisfies its frozen budgets. These results support SCIENTIFIC FEASIBILITY GO under the explicitly documented local criteria. They do not complete AP1_GO. Audits 058–060 leave the full quantitative raw/paired-data response undecided: the required executable O049 histories, transports, complete contact assembly, uniform operator errors, reference calculation and finite cost bound are not jointly available. The single-time reformulation is algebraically established at a common finite regulator, but is not production-ready. No full response calculation or new physical NONPASS is reported. The carrier ontology, global cosmology and observational predictions remain outside the established result.

Zenodo (CERN European Organization for Nuclear Research)
Partnerships for the goals
Cosmology and Gravitation Theories
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Apeiron: A Bounded Scientific-Feasibility Construction for a Fundamental Cosmological Carrier — Josip Fellner · Zenodo (CERN European Organization for Nuclear Research) (2026) | TGRS Research Map | TGRS