V62: Reference-field Cosmology — The Continuum of Space via Reference Integration
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2025
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| _version_ | 1866901731296673792 |
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| author | Yoshida, Satoshi ChatGPT, A. Gemini, G. Claude, C. |
| author_facet | Yoshida, Satoshi ChatGPT, A. Gemini, G. Claude, C. |
| contents | <p>We propose Reference-field Cosmology (RFC), a two-stage framework that treats "space" not as a pre-existing container but as a rendered state maintained by continual integration of reference signals. In Stage 1, a nonlinear gate Σ assigns relative trust weights to references (light, gravity, self-motion) based on their uncertainties. In Stage 2, an agent selects a stable spatial solution by minimizing a reference cost C_ref(D), decomposed into mismatch, delay, control, and far-field compensation terms.</p> <p>Simulations reproduce three behavioral modes observed under artificial light: stable orbiting around line-like lights, hovering/stall near point-like lights, and inversion leading to crash. The model predicts (i) an emergent stable radius r* as a cost minimum, (ii) a phase transition with a critical light length L_c separating orbit and crash regimes, and (iii) a quantitative "reference-budget" hypothesis linking failures to energy supply limits (~20% baseline).</p> <p>We further outline a scale-continuum interpretation (cosmos–organism–cell) in which "existence" corresponds to paying the ongoing cost to update space. Core claim: "To exist is to keep paying the reference cost to keep updating space."</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_18108702 |
| institution | Zenodo |
| language | |
| publishDate | 2025 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | V62: Reference-field Cosmology — The Continuum of Space via Reference Integration Yoshida, Satoshi ChatGPT, A. Gemini, G. Claude, C. Reference-field Cosmology, Space Rendering, Reference Integration, Σ-gate, Reference Cost, Moth Navigation, Artificial Light, Phase Transition, Dorsal Light Response, Energy Budget Hypothesis, Scale Continuum, Information-theoretic Cosmology, YAGC <p>We propose Reference-field Cosmology (RFC), a two-stage framework that treats "space" not as a pre-existing container but as a rendered state maintained by continual integration of reference signals. In Stage 1, a nonlinear gate Σ assigns relative trust weights to references (light, gravity, self-motion) based on their uncertainties. In Stage 2, an agent selects a stable spatial solution by minimizing a reference cost C_ref(D), decomposed into mismatch, delay, control, and far-field compensation terms.</p> <p>Simulations reproduce three behavioral modes observed under artificial light: stable orbiting around line-like lights, hovering/stall near point-like lights, and inversion leading to crash. The model predicts (i) an emergent stable radius r* as a cost minimum, (ii) a phase transition with a critical light length L_c separating orbit and crash regimes, and (iii) a quantitative "reference-budget" hypothesis linking failures to energy supply limits (~20% baseline).</p> <p>We further outline a scale-continuum interpretation (cosmos–organism–cell) in which "existence" corresponds to paying the ongoing cost to update space. Core claim: "To exist is to keep paying the reference cost to keep updating space."</p> |
| title | V62: Reference-field Cosmology — The Continuum of Space via Reference Integration |
| topic | Reference-field Cosmology, Space Rendering, Reference Integration, Σ-gate, Reference Cost, Moth Navigation, Artificial Light, Phase Transition, Dorsal Light Response, Energy Budget Hypothesis, Scale Continuum, Information-theoretic Cosmology, YAGC |
| url | https://doi.org/10.5281/zenodo.18108702 |