PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
January 22, 20260 citationsOpen Access

ψ-Cosmology: The Second Retentive Axis and the Transition to Structural Persistence Towards a Unified Post-ΛCDM Retentive Framework

View Full Paper
LYLogacheva Yulia

Key Points

  • To introduce the Second Retentive Axis in ψ-Cosmology, extending late-time cosmic structure understanding beyond ΛCDM.
  • Analysis of data from DESI, KiDS–DES, HSC, and Euclid
  • Introduction of a retentive term and stress-energy tensor
  • Establishment of a geometric transition criterion
  • Development of a Ξ-node detection algorithm
  • Experimental validation through ψ-interferometry
  • Identified a growth index deviation towards γ ≈ 0.639
  • Proposed a retentive, quasi-static phase of cosmic structure
  • Demonstrated topological stability of Ξ-nodes with <1% variance
  • Provided falsifiable predictions for future observational missions
  • Included laboratory reproduction protocols for retentive phenomena

Abstract

The present work develops the Second Retentive Axis within ψ-Cosmology — a structural extension of the late-time universe beyond the dynamical regime assumed in ΛCDM. Using recent results from DESI, KiDS–DES, HSC, Euclid, and early calibration pipelines for Roman and Xuntian, the study identifies a persistent deviation of the growth index toward γ ≈ 0.639, suggesting the emergence of a retentive, quasi-static phase of cosmic structure. The article introduces: • a GR-consistent retentive term Λψ and its covariant stress-energy tensor Tψμν, • a geometric transition criterion ∂Δψ/∂t → 0, • topological stability of Ξ-nodes with <1% variance, • falsifiable predictions for Roman, Xuntian, DESI, and Euclid, • laboratory-scale reproduction via ψ-interferometry (NIST/PTB “Special Tests”). Supplementary materials include the full derivation of the retentive Lagrangian, growth-index fitting functions, numerical sensitivity analysis, Ξ-node detection algorithm, and laboratory retentive protocols. This work forms part of the ψ-Architecture Research Series and contributes to the consolidation of retentive physics as a unified post-ΛCDM framework.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Logacheva Yulia (2026) studied this question.

synapsesocial.com/papers/6971bdec642b1836717e29b9https://doi.org/10.5281/zenodo.18319245
Ask AI
Helpful
Bookmark
Share
View Full Paper