The extreme scarcity of antimatter in the observable universe presents one of the most perplexing asymmetries in cosmology. Standard cosmological models predict that the Big Bang should have produced equal amounts of matter and antimatter, which should have subsequently annihilated, leaving a universe dominated entirely by photons. To resolve this paradox, we apply the Holographic Hologram-Holographic Quantum Mechanics (H3QM) framework, which postulates that space is fundamentally a discrete 3D gear network operating at the Planck scale. We demonstrate that any interconnected 3D gear system inherently possesses a macroscopic chirality (handedness) in its global rotational topology. Following the initial topological expansion (inflation), this geometric handedness established a preferential rotational direction across the spatial matrix. Because particles are modeled as topological windings within this gear grid, the chiral bias of the vacuum itself naturally favors the formation of right-handed or left-handed windings over their mirror opposites. This provides a purely geometric and deterministic mechanism for CP violation and the resulting matter-antimatter asymmetry, without relying on speculative new particles or fine-tuned parameters. 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.