The Damascus Topology Model (DTM) provides a comprehensive synthesis of fractional quantum gravity, trans-aeon dynamics, and cosmological observables. Developed to resolve the profound incompatibility between the deterministic framework of General Relativity and the discrete nature of Quantum Mechanics, the DTM replaces the classical smooth manifold hypothesis with a non-differentiable, quantum fractal geometry at microscopic scales, characterized by a non-integer Hausdorff dimension of d=4-. To regularize infinite spacetime singularities, the framework introduces a Trans-Aeon Flux mechanism that replaces classical black hole singular zero-points with a two-sided, asymmetric hyperbolic throat, which flawlessly aligns with the echo-free observational constraints of the GW250114 merger. Furthermore, the model utilizes a 1+1D conformal boundary condition—acting as a topological throttle governed by the multivariable bounds of the generalized Damascus inequality—to mechanically filter large structural waves, thereby offering a statistically superior resolution to the Planck 2018 cosmic microwave background (CMB) low-multipole anomalies.
Joseph Baughman (Wed,) studied this question.