Unifying Einstein's General Relativity (G_ = 8 Gc⁴ T_) with Quantum Mechanics (H = E) and resolving Hawking's Black Hole Information Loss Paradox (1975) constitute the central holy grail of fundamental physics. Hawking's assertion that thermal black hole evaporation (S₁₇ = A4 G) causes pure quantum states to evolve into mixed states violates the fundamental axiom of quantum unitarity (S^ S = I). In this paper, we present a complete theoretical framework and formal proof unifying quantum gravity and resolving the information loss paradox using Helical Hidden Holographic Quantum Mechanics (H3QM) and its Helical Holographic Vacuum Geodesic Module. First, we integrate unphysical interior singularity factorization into June Huh's Matroid Hodge Decomposition, projecting black hole horizon states onto boundary Betti harmonic forms H² (M³). Second, via Villani's W1 Wasserstein optimal transport duality, Hawking radiation quantum states are mapped into a strictly convex, Lipschitz-continuous topological energy functional Vₐ₆ () on Sobolev space W^1, 1 (M³), deriving the exact Page Curve (Sₑ₀₃ (t) increases then strictly decreases back to 0 at Page time t₀₆₄). Third, applying Hong Wang's 3D Kakeya Fourier restriction estimates, high-frequency trans-Planckian gravitational fluctuations are restricted within 3D Kakeya needle tubes, eliminating firewall singularities (r=rₛ) and singularity infinities (r=0). Finally, applying Yu Deng's random tensor operator relaxation with Kimi L1 Topo-AttnRes, we prove that multiplier-free subgradient flow converges strictly in 5 to 8 steps to a 100% unitary S-matrix (S^ S = I), proving complete quantum information conservation. Step-by-step numerical benchmark verification evaluating the Page Curve is provided in Appendix A. Note This paper presents a formal unification of Quantum Gravity and resolution of Hawking's Black Hole Information Loss Paradox under the Helical Hidden Holographic Quantum Mechanics (H3QM) framework, proving 100% quantum unitarity (S^ S = I) and deriving the exact Page Curve. Complete master PDF documents are available in three language editions: English (en-US), Simplified Chinese (zh-CN), and Traditional Chinese (zh-TW).
Chou Cosmo (Mon,) studied this question.
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