Phase Invariance and the Resonant Nature of the Speed of Light: A Geometric and Informational Framework
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| Formato: | Recurso digital |
| Lenguaje: | inglés |
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2025
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| _version_ | 1866902336316637184 |
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| author | Lee, Byoungwoo |
| author_facet | Lee, Byoungwoo |
| contents | <p>This paper proposes a novel perspective on the invariance of the speed of light by introducing a geometric–informational framework rooted in phase invariance. By modeling wave phenomena over an abstract phase manifold MΦ\mathcal{M}_\PhiMΦ, the paper suggests that the speed of light ccc emerges as a resonance point ensuring minimal phase distortion and maximal coherence in informational propagation. This leads to new interpretations of Lorentz symmetry, spacetime dynamics, and potential mechanisms for spontaneous Lorentz symmetry breaking (SLSB). The paper belongs to the Blacklight Hypothesis series and builds on the prior investigations of entropy flows, topological decoherence, and emergent dynamics.</p> <h4> Description (한국어 요약):</h4> <p>본 논문은 빛의 속도 c의 불변성을 위상 불변성과 위상 공명 원리를 기반으로 새롭게 해석합니다. 위상 다양체 MΦ\mathcal{M}_\PhiMΦ 위의 정보 전파를 통해, c는 위상 왜곡을 최소화하는 공명 속도로 나타나며, 이는 자발적 로렌츠 대칭성 붕괴(SLSB)와도 연결됩니다. 이는 Blacklight Hypothesis 시리즈의 핵심 명제를 확장한 이론적 시도로서, 위상 공간의 기하학, 정보론, 광속의 기원에 대한 새로운 통합적 통찰을 제시합니다.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_15828300 |
| institution | Zenodo |
| language | eng |
| publishDate | 2025 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | Phase Invariance and the Resonant Nature of the Speed of Light: A Geometric and Informational Framework Lee, Byoungwoo Blacklight Hypothesis, phase invariance, resonant speed of light, non-isomorphic fields, electromagnetic-gravitational duality, phase resonance manifold, Lorentz symmetry violation, dynamic field coherence, decoherence, topological field theory Information Physics, Blacklight Hypothesis, Fundamental Forces, Non-Isomorphism, Equivalence Principle, Informational Gravity, Entropic Geometry, Lagrangian Limitations, Asymmetry in Natural Laws, Information Upload, Spacetime Curvature, Thermodynamic Spacetime, Quantum–Gravity Interface phase invariance, speed of light, resonance, informational geometry, Lorentz symmetry, Blacklight Hypothesis, SLSB, topological decoherence, emergent spacetime, entropy dynamics, coherence manifold, geometric field theory <p>This paper proposes a novel perspective on the invariance of the speed of light by introducing a geometric–informational framework rooted in phase invariance. By modeling wave phenomena over an abstract phase manifold MΦ\mathcal{M}_\PhiMΦ, the paper suggests that the speed of light ccc emerges as a resonance point ensuring minimal phase distortion and maximal coherence in informational propagation. This leads to new interpretations of Lorentz symmetry, spacetime dynamics, and potential mechanisms for spontaneous Lorentz symmetry breaking (SLSB). The paper belongs to the Blacklight Hypothesis series and builds on the prior investigations of entropy flows, topological decoherence, and emergent dynamics.</p> <h4> Description (한국어 요약):</h4> <p>본 논문은 빛의 속도 c의 불변성을 위상 불변성과 위상 공명 원리를 기반으로 새롭게 해석합니다. 위상 다양체 MΦ\mathcal{M}_\PhiMΦ 위의 정보 전파를 통해, c는 위상 왜곡을 최소화하는 공명 속도로 나타나며, 이는 자발적 로렌츠 대칭성 붕괴(SLSB)와도 연결됩니다. 이는 Blacklight Hypothesis 시리즈의 핵심 명제를 확장한 이론적 시도로서, 위상 공간의 기하학, 정보론, 광속의 기원에 대한 새로운 통합적 통찰을 제시합니다.</p> |
| title | Phase Invariance and the Resonant Nature of the Speed of Light: A Geometric and Informational Framework |
| topic | Blacklight Hypothesis, phase invariance, resonant speed of light, non-isomorphic fields, electromagnetic-gravitational duality, phase resonance manifold, Lorentz symmetry violation, dynamic field coherence, decoherence, topological field theory Information Physics, Blacklight Hypothesis, Fundamental Forces, Non-Isomorphism, Equivalence Principle, Informational Gravity, Entropic Geometry, Lagrangian Limitations, Asymmetry in Natural Laws, Information Upload, Spacetime Curvature, Thermodynamic Spacetime, Quantum–Gravity Interface phase invariance, speed of light, resonance, informational geometry, Lorentz symmetry, Blacklight Hypothesis, SLSB, topological decoherence, emergent spacetime, entropy dynamics, coherence manifold, geometric field theory |
| url | https://doi.org/10.5281/zenodo.15828300 |