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Worldline-Mediated Correlations in Photon Interactions: Empirical Evidence Linking Reflection, Superposition, and Entanglement

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Zenodo2026-01-25 更新2026-05-29 收录
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This manuscript is current in Official Peer Review. Not final version.Copyright©2026 Alex De Giuseppe.All rights reserved. This work is protected by copyright. Any form of plagiarism, unauthorized reproduction, or misappropriation of ideas, mathematically results, or text without proper citation constitutes a violation of academic and intellectual property standards and common laws. No commercial use, adaptation, or derivative works are permitted without explicit written permission from the author. For correspondence, citations, collaboration inquiries, or feedback please contact:degiuseppealex@gmail.com The hash files that determine ownership have been created Worldline Correlations Across Scales: Emergent Entanglement and Reflection as Evidence of Alternative Histories We present a unified framework that connects microscopic quantum entanglement, macroscopic correlated phenomena, and the physics of reflection to a single principle: the intersection of alternative worldlines constrained by geometric, material, and informational conditions (Nima's matrioska layers, ∆C⇄∆M⇄∆L). At the microscopic level, these constraints generate operationally detectable entanglement, reproducing interference and superposition effects without invoking faster-than-light signaling. By constructing admissible configuration spaces and computing non-factorizability measures (mutual information, logarithmic negativity in Gaussian realizations), we show how macroscopic systems can manifest entanglement-like correlations, consistent with the operational De Giuseppe theorem. At the macroscopic and optical level, we analyze reflection phenomena across mirrors, glass, and water surfaces. Classical interpretations of reflection via local re-emission from electrons cannot account for the preservation of coherence and phase observed in single-photon experiments. The “smoking gun” emerges in the Fresnel coefficients and correlated phase measurements: reflected photons behave as if selected from an alternative, pre-existing worldline that intersects with the incoming trajectory, perfectly preserving information without violating causality or no-signaling. This framework unifies interference, entanglement, and reflection as consequences of geometric intersection constraints in worldline space, providing a coherent explanation for phenomena traditionally attributed to probabilistic or purely wave-based interpretations. Experiments with single photons, entangled pairs, and phase-preserving reflections already contain the empirical signatures: the reflected light is not a simple local re-emission but the projection of a correlated worldline, making this the first direct operational evidence of worldline-mediated correlations across scales. In conclusion, both microscopic and macroscopic correlations, including the phase-preserving reflection of photons, can be interpreted as manifestations of intersecting alternative worldlines constrained by the matrioska structure. This offers a consistent ontological interpretation of quantum and relativistic phenomena, bridging scales from single-photon experiments to macroscopic entanglement without introducing extra entities or violating fundamental physical laws.

本稿件目前处于正式同行评审阶段。 尚未定稿。版权所有©2026 亚历克斯·德·朱塞佩(Alex De Giuseppe),保留所有权利。 本作品受版权保护。任何形式的抄袭、未经授权复制,或未经适当引用就盗用创意、数学结果或文本的行为,均违反学术及知识产权准则与普通法律。 未经作者明确书面许可,不得进行商业使用、改编或创作衍生作品。 如需沟通、引用、咨询合作或反馈,请联系:degiuseppealex@gmail.com 已创建用于确认所有权的哈希文件(hash files)。 跨尺度世界线(worldline)关联:涌现纠缠与反射作为备选历史的证据 我们提出了一个统一框架,将微观量子纠缠、宏观关联现象与反射物理学统一至单一原理:受几何、物质与信息条件约束的备选世界线相交(即尼玛的套娃层级结构[matrioska layers],∆C⇄∆M⇄∆L)。 在微观层面,这些约束会产生可通过实验操作检测的纠缠,在不引入超光速信号传递的前提下复现干涉与叠加效应。通过构建可容许构型空间并计算非因子化度量(互信息[mutual information]、高斯实现下的对数负性[logarithmic negativity]),我们证明了宏观系统如何展现类纠缠关联,这与可操作的德·朱塞佩定理(De Giuseppe theorem)相符。 在宏观与光学层面,我们分析了镜面、玻璃与水面上的反射现象。传统上基于电子局域再发射的反射解释,无法解释单光子实验中观测到的相干性与相位保持特性。在菲涅耳系数(Fresnel coefficients)与关联相位测量中出现了该决定性佐证:反射光子的行为仿佛是从与入射轨迹相交的、预先存在的备选世界线中选取的,在不违背因果律与无信号传递原则的前提下完美保留了信息。 该框架将干涉、纠缠与反射统一为世界线空间中几何相交约束的结果,为传统上归因于概率性或纯波动诠释的现象提供了自洽解释。单光子、纠缠光子对以及相位保持反射的相关实验已包含经验证据:反射光并非简单的局域再发射,而是关联世界线的投影,这也是首个通过实验操作证明跨尺度世界线介导关联的直接证据。 综上,包括光子相位保持反射在内的微观与宏观关联,均可被诠释为受套娃层级结构约束的相交备选世界线的表现形式。该框架为量子与相对论现象提供了自洽的本体论诠释,在不引入额外实体或违背基本物理定律的前提下,搭建了从单光子实验到宏观纠缠的尺度桥梁。

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2026-01-25
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