The Big Bang from the Collapse of the Densest Object in the Previous Aeon

Nicholas Bao, Jian-Bin Bao · Preprints.org · 2025

By analyzing Gurzadyan and Penrose’s anisotropic distribution of concentric low-variance circles with the Planck Collaboration’s large-scale temperature extrema in the CMB, we propose a mechanism initiating the Big Bang: the Universe would emerge from the collapse of the densest object in a previous-aeon black hole. While the object collapsed into the Big Bang singularity with minimum entropy, the entropy of the host black hole kept increasing. Thus the Second Law of thermodynamics has never been violated. Where the collapse occurred, or the Center of this Universe, would currently be about 30 billion light years away from us and around Galactic coordinates (l,b)=(279°,-47°). This result is supported by independent observations of spatial anisotropies, time variations and unexpected structures.

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