Quantum entanglement has long been characterized by Albert Einstein as "spooky action at a distance," challenging the classical understanding of locality and causality due to its apparent instantaneous interaction across vast spatial separations. In this paper, we resolve this paradox through the theoretical framework of Holographic Hologram-Holographic Quantum Mechanics (H3QM). We postulate that vacuum space is not an empty continuous manifold, but rather a discrete, tightly packed three-dimensional network of physical gears at the Planck scale. Under this framework, quantum entanglement is no longer interpreted as the superluminal transmission of information, but as the rigid topological locking of microscopic gears within the same kinematic chain. By applying topological winding and classical gear mechanics to the fundamental structure of space, we demonstrate that entangled particles act as mechanically linked endpoints of a unified spatial structure. This geometric paradigm provides a deterministic, local, and causal explanation for entanglement, seamlessly integrating quantum non-locality with geometric mechanics. Note: This deposit includes the full paper in English (en-US), Traditional Chinese (zh-TW), and Simplified Chinese (zh-CN).
Cosmo Chou (Wed,) studied this question.
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