Implementation model of a universe based on information

Alessandro Capurso · 2021

Consider the last paper "The Universe as a Telecommunication Network" available at: https://osf.io/c7bg4/ ------- Starting from an Information and Communication Technologies perspective focused on implementability, we propose a model of the universe based on a memory network. Spacetime is described through finite and discrete information of non-local spatial correlations elaborated on a discrete processing cycle (as a thick present). The need for logical consistency in the information is connected to a relativity in respect to global scales of reference in an interconnected universe. The quantized correlation potential (from which space emerges as imaginary in each cycle) is summarized in a fundamental causal memory with a log-perspective through a Dual-Tree Complex Wavelet Transform and persists along the evolution cycles as closed time-like curves (CTC) within the thick present considered. CTC, described as memory-loops, are introduced to assure logical consistency of the information potential. We then propose an interpretation of elementary particles connected to a holographic description, extended in the model to ER=EPR=CTC. Finally, we identify a physical implementation of the model in black holes, clarifying how fundamental constants could be defined in the spacetime patch emerging beyond the singularity and proposing quantum fields as wavelets along the radius. Additional elaborations on both metric and space expansion in the proposed model are provided in the dedicated Annexes.

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