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April 19, 20260 citationsOpen Access

ESSC v28: A Sparse Predictive Gate for Conversion Success in the Usable Galaxy Manifold

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Uumimoto

Key Points

  • To examine the factors influencing conversion success within the usable galaxy manifold as established in ESSC v27.
  • Developed a sparse predictive gate framework for analyzing conversion success.
  • Identified key components including halo support and peak placement as determinants.
  • Utilized metrics such as ROC AUC, balanced accuracy, and Brier score for validation.
  • Achieved a mean ROC AUC of about 0.905, indicating strong predictive capability.
  • Balanced accuracy around 0.816 shows reliable predictions across different scenarios.
  • Brier score of 0.137 suggests low prediction uncertainty.

Abstract

ESSC v28 develops a sparse predictive gate for conversion success within the usable galaxy manifold established in ESSC v27. The central result is that conversion success is not determined by peak-side baryon amplitude alone. Instead, it is organized by a compact joint gate whose dominant components are low location-side halo support, outward peak placement, and positive pre-transition spacing, canonically expressed through locationfₕalo, peakRₒverRdisk, and dₗocₜoₚeakᵣrd. Secondary modifiers include strictₚrepeakᵣatio, locationVbarₖms, and peakfbaryon. Repeated sparse validation yields a mean ROC AUC of about 0. 905, balanced accuracy of about 0. 816, and Brier score of about 0. 137. The analysis also supports a finite-width conversion-band interpretation rather than a single sharp threshold, and a comparison with stacked HSC weak-lensing structure is included as external consistency. This work does not propose a new force law or replace direct dynamical modeling; its claim is narrower and operational: within the v27 usable manifold, conversion success is predictably organized by a sparse, stable, and interpretable structural gate.

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Cite This Study

umimoto (2026) studied this question.

synapsesocial.com/papers/69e473bd010ef96374d8f770https://doi.org/10.5281/zenodo.19635743
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