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March 14, 20260 citationsOpen Access

Spectral Slope Branch Structure and Observational Localization in a Constraint-Driven Non-Equilibrium Update System

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TFTakashi Furuya

Key Points

  • The study aims to investigate spectral slope structures in a constraint-driven non-equilibrium update system and relate them to cosmic microwave background observations.
  • Conducted numerical simulations of a non-equilibrium update system
  • Analyzed the statistical distribution of spectral slopes
  • Compared model-derived slopes with observed CMB angular power spectrum slopes
  • Identified parameter regimes for spectral slope emergence
  • Multiple spectral slope branches are generated through non-commutative coarse-graining dynamics
  • Observational CMB spectral slopes fall within the generated structural phase space
  • The analysis links spectral slope branches with critical transitions in the update system

Abstract

This record contains the manuscript, figures, and processed datasets associated with the study: "Spectral Slope Branch Structure and Observational Localization in a Constraint-Driven Non-Equilibrium Update System". The study investigates spectral slope structures generated by a constraint-driven non-equilibrium update system. Numerical simulations reveal the presence of multiple spectral slope branches arising from non-commutative coarse-graining dynamics. The statistical distribution of spectral slopes produced by the model is compared with the observed spectral slope derived from the CMB angular power spectrum. A related study identified a critical transition in the same update system (Furuya, 2026), providing the parameter regime in which the spectral slope branch structure emerges. The analysis shows that the observational CMB spectral slope lies within the structural phase space generated by the model, specifically within the transition region between slope branches. The record includes the manuscript, figures used in the study, and processed datasets used in the slope comparison. Related work:Critical Transition and Reliability Boundary...https://doi.org/10.5281/zenodo.18986867

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Cite This Study

Takashi Furuya (2026) studied this question.

synapsesocial.com/papers/69b4fbc1b39f7826a300c3aahttps://doi.org/10.5281/zenodo.18987482
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