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Emergence VOL1

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Zenodo2026-04-30 更新2026-05-26 收录
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Title: Emergence: A Deterministic Model from Wave Intersections on a Pre‑Geometric Canvas — Complete Series (Papers I–VIII) --- Overview A complete unified framework derived from a single postulate: all fields are open waves on a pre‑geometric canvas. Wave intersections above a threshold form closed waves (particles). Spacetime emerges from space‑time wave intersections as a discrete voxel lattice. Gravity is lattice compression. Eight papers cover: core framework, quantum foundations, black holes and cosmology, particle physics, condensed matter, atomic and optical physics, nuclear and biophysics, quantum information (Bell measurement, teleportation, Bell inequality), and classical physics. The model reproduces ~100+ phenomena, solves the measurement problem, resolves the information paradox, derives the Born rule, avoids singularities, and makes testable predictions (CMB cutoff, energy‑dependent c). --- Papers in the Series Paper I: Core Framework Introduces the canvas, waves, thresholds, lattice, gravity, Maxwell's equations, Lorentz force, continuity equation, Noether's theorem, and testable predictions. Paper II: Quantum Foundations Derives quantum tunneling, Casimir effect, Unruh effect, Aharonov–Bohm effect, Berry phase, quantum Zeno effect, decoherence, Hong–Ou–Mandel effect, SPDC, Feynman diagrams as wave intersections (with back‑reaction), uncertainty principle, Bell's theorem, Bell state measurement, quantum teleportation, and Bell inequality violation. Paper III: Black Holes and Cosmology Derives Hawking radiation, resolves the black hole information paradox, derives baryon acoustic oscillations, primordial gravitational waves, inflation, reheating, and the arrow of time. Paper IV: Particle Physics Derives neutrino oscillations, CP violation, baryon asymmetry, axions, magnetic monopoles, a hierarchical generation mechanism explaining why there are three generations of fermions, and the left‑handed weak force (parity violation) via canvas handedness and wavelength matching. Paper V: Condensed Matter Derives the Kondo effect, fractional quantum Hall effect, superconductivity (BCS theory), superfluidity, Bose–Einstein condensation, Josephson effect, and Anderson localization. Paper VI: Atomic and Optical Physics Derives the Lamb shift, hyperfine splitting, Zeeman effect, Stark effect, Sagnac effect, Faraday effect, and optical coherence. Paper VII: Nuclear and Biophysics Derives alpha decay, beta decay, gamma decay, quantum coherence in photosynthesis, and the radical pair mechanism for avian magnetoreception. Paper VIII: Classical Physics Derives Newton's second law, work‑energy theorem, Hooke's law, simple harmonic motion, Coulomb's law, Ohm's law, Kirchhoff's laws, AC circuits, Biot‑Savart law, Lenz's law, Poynting vector, Euler and Navier‑Stokes equations, Bernoulli's principle, Poiseuille flow, the laws of thermodynamics, the ideal gas law, Boltzmann distribution, Carnot efficiency, Snell's law, the law of reflection, the Doppler effect, standing waves, and the speed of sound. --- Key Achievements Achievement DescriptionUnification Derives GR, QFT, QM, cosmology, particle physics, condensed matter, atomic physics, nuclear physics, biophysics, and classical physics from a single set of postulates.

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Zenodo
创建时间:
2026-04-27
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