Hyper Quantum Cosmos-III: Entangle Quantized-Space Leading Primordial and Current Ordered Universe
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We reformulate quantum mechanics within an 11-dimensional quantized space composed of 4D spacetime (R), 5D internal S-space, and a 2D occupation coordinate (mq). Quantum wave behavior arises from intrinsic S-space oscillations, while particles correspond to mq = 1 occupation states. This framework resolves wave–particle duality, reconstructs the double-slit experiment, and explains entanglement as S-space resonance between vacuum cells. Around primordial black holes, S-space becomes strongly entangled, forming dark-matter halos and suppressing Hawking radiation. Accumulated S-space fluctuations can undergo quantum condensation, generating mini-inflation episodes. Together with recent papers of HQC-I and HQC-II, these results indicate that quantized space governs cosmic structure and supports a cyclic Universe.



