遇见数据集

(Updated) Catalog of Canvas Model Predictions

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Zenodo2026-06-24 更新2026-08-01 收录
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The Canvas Model derives fundamental physical constants and phenomena from eight primitives (P1–P8) and four pillars (I–IV) with zero free dimensionless parameters in the Machine and two boundary conditions in the State. This catalog organizes all results into five categories: 1. Parameters Derived from Primitives (44 entries): These are fixed entirely by the eight primitives and four pillars. No experimental data of any kind are used in their derivation. Examples include the number of spatial dimensions (n = 3), the gauge subspace dimensions (q_s = \{1,2,3\}), the waveform asymmetry ratio (T_{\text{rise}}/T_{\text{fall}} = \pi/2), and the gauge coupling ratios (g_1^2 : g_2^2 : g_3^2 = 1 : 2/3 : 2/\pi). 2. Parameters Computed from the Theory (58 entries): These reproduce known measurements. They are computed using the single overall Yukawa normalization \mathcal{N} \approx 0.069 (determined by the top quark mass through numerical RG evolution) and the cosmological boundary condition H_0. Examples include all quark and charged lepton masses, the CKM and PMNS matrices, the Higgs mass, the cosmological constant \Omega_\Lambda = 0.685, and the inflationary spectral index n_s = 0.964. 3. Internal Parameters (57 entries): These are intermediate quantities derived from the primitives and used in the computation of observable parameters. They have no direct experimental measurement but are essential to the theory's logical structure. Examples include harmonic modes, geometric overlaps, gauge binding energies, the fundamental coupling \alpha_0, and the horizon information bound I_{\text{max}}. 4. Genuinely Novel Predictions (44 entries): These are positive, quantitative predictions for phenomena that have not yet been measured. They distinguish the Canvas Model from other theories and are falsifiable by upcoming experiments. Examples include the \pi/2 waveform asymmetry (testable in laboratory wave-intersection experiments), the tensor-to-scalar ratio r \ll 0.01, the PMNS phases \delta_{\text{CP}} = 220^\circ, \alpha_{21} = \pi/2, \alpha_{31} = 0, the effective Majorana mass \langle m_{\beta\beta} \rangle \approx 0.048 eV, Planck-mass dark matter remnants, no supersymmetry, no axion, and gauge coupling non-unification. 5. Boundary Conditions (2 entries): These specify the State of our particular universe. They are measured, not derived. They are the age of the universe (H_0) and the initial fluctuation amplitude (\Omega_{\text{DM}}). Total: 205 entries. Every entry has a meaningful origin or measured value. No placeholder dashes. Every origin traces to specific primitives (P1–P8) and pillars (I–IV). Why this matters: The Canvas Model has zero free dimensionless parameters in the Machine and two boundary conditions in the State. The Planck scale M_P serves as the unit of measurement. The single computed parameter \mathcal{N} \approx 0.069 is determined by the top quark mass through numerical RG evolution. This catalog provides a complete, organized reference for all predictions of the theory, from the fundamental constants of nature to the results of upcoming experiments. It is a living document; updates will be published as new predictions are confirmed and as simulation and experimental results become available. Keywords: canvas model, predictions, catalog, gauge couplings, masses, CKM matrix, PMNS matrix, cosmological constant, dark matter, hierarchy problem, strong CP, neutrino masses, inflationary parameters, boundary conditions, falsifiable predictions

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Zenodo
创建时间:
2026-06-24
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